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Williams Shipping Signed a New Lease with Port of Milford Haven

Tuesday, 15th February 2022

Williams Shipping have signed a new lease with the Port of Milford Haven which will keep them operating and providing marine services from Pembroke Port for the next 15 years, continuing the company’s commitment to long-term investment in the area.

Supporting marine in Pembroke

Leading marine and logistics company Williams Shipping provides a wide range of key services to the marine industry and is a recognised supplier to the Port of Milford Haven at the heart of the UK’s energy supply and development industry.

“We have had a marine operation in Pembroke Dock and Milford Haven since 2004,” says Philip Williams, Managing Director. “We provide many different services to the port which are contributing to the economic growth of the region.”

Williams Shipping provides the port with services and solutions including stores deliveries to ships at the oil and gas terminals, crew transfers, navigation mark servicing, oil pollution prevention services, offshore renewable energy support, marine civil engineering support including providing crane barges, towage services and supplying containers through their subsidiary Willbox.

Signing the Lease

Williams Shipping is committed to continued investment in Pembroke Port, supporting local industries, recruiting skilled staff and apprentices from the region, and contributing to the marine economy. The signing of the lease confirms Williams Shipping’s long-term commitment to the port and allows them to invest further into the infrastructure and the vessels that they will operate from there.

“We have mobilised a 22m multicat, “Willendeavour”, to Pembroke Port where it will now be based alongside our existing fleet including a 15m multicat and 16m tug,” says Philip Williams. “In addition, we have invested in a replacement 70t crawler crane to operate from one of our flat top barges and will soon be basing one of our fast passenger launches in the haven to enable faster crew changes.”

Steve Edwards, Commercial Director at the Port of Milford Haven, said “The services and expertise offered by Williams Shipping adds real value to what we can offer our customers not just at Pembroke Port, but across the Milford Haven Waterway.

We are the UK’s largest energy port and the supply chain around us has over sixty years of experience in providing excellent services to the oil and gas sector.

As we transition to Net Zero, the skills developed here are proving increasingly vital for the development, logistics, operations and maintenance of renewable energy devices and an increasing number of developers are basing themselves here to take advantage of these skills as well as our natural environment and proximity to the Celtic Sea.

Our collaboration with Williams Shipping will therefore be important as we grow this sector on the Haven.”

More to come

One of the biggest benefits of this facility, for Williams Shipping, is the deep-water quayside within the secure facility of Pembroke Port.
Philip adds, “Together with the Port we will also be investing in improving the berthing pontoons at Quay 3, further enhancing our capabilities in supporting marine activity.”

The port is also committed to developing the marine and renewables sectors, something that Williams Shipping is keen to support.

“We hope to continue a long and collaborative relationship with the Port of Milford Haven and the wider community for the next 15 years and beyond.”

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World-wide shortage of Zinc – Time for a rethink on Zinc.

Thursday, 10th February 2022

For the last few years MGDUFF has been advising customers “time for a re-think on Zinc”. Zinc has been the go-to anode material for as long as cathodic protection has been around. So common is its use that Americans simply call them ‘zincs.’

It was a cost-effective material that worked well in salt water. However, over the last 5 years the cost price of the SHG (special high grade) zinc required, has gone through the roof and today there is a world-wide shortage fuelling further price increases.

In the background aluminium alloy anodes have been working away protecting boats, pontons, harbours and many other marine structures. People in the “know” made the change some years ago moving away from zinc alloy anodes to aluminium alloy anodes.

These include household marine industry names such as Princess Yachts, Sunseeker International and the RNLI. Why? All along aluminium alloy anodes have been a better anode material, providing greater cathodic protection with a higher driving voltage, and size for size lasting up to 20% longer due to the higher amp/hour/kg rate.

The PAL (Primary Aluminium) used has increased in costs, but nowhere near zincs dramatic and on-going rise. We don’t need zinc as an anode material, aluminium more than covers the requirements.

Now really is the time to make the change. What`s the catch? No catch, and the icing on the cake is aluminium anodes are more environmentally friendly as they contain no cadmium as required in zinc anodes.

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Monitoring Kelp with Custom Subsea Shackles and Data Loggers

Thursday, 10th February 2022

Dynamic Load Monitoring (UK) Ltd (DLM) has designed and manufactured specialised load monitoring and data logging equipment for an R&D project by a sustainable organisation, Kelp Blue, whose aim is to grow and manage large-scale kelp forests.

Kelp is a type of large algae seaweed with many sustainable capabilities such as: feed for livestock which helps to reduce greenhouse gas emissions, medicine and textile fibres which support the need for sustainable products.

DLM’s innovative custom designed equipment will be an integral part of Kelp Blue’s floating forest and sustainable vision.

Kelp Blue is managing a kelp forest off the coast of Namibia and came to DLM, who frequently designs and manufactures specialised equipment for various subsea and offshore applications, with a proposition to construct equipment for structural monitoring purposes.

In the initial design stages, spokesperson Ferdi Knoester, Project Engineer at Kelp Blue requested subsea load monitoring devices to monitor the load tension on mooring lines on a floating structure that is tethered to the sea bed.

The devices sent to Namibia include six of DLM’s DL-3.0 Subsea Data Loggers mounted onto three cabled Subsea Shackle Load Cells, which are some of DLM’s specialised equipment. The Subsea Shackle Load Cell is used on applications such as subsea moorings, subsea vehicle tension monitoring and anchoring tension monitoring.

The Subsea Data logger is a proprietary data logger designed for use on applications such as array cable monitoring, monitoring of subsea acceleration and measurement on offshore structures, including wind turbines.

The DL-3.0 is used for long or short-term deployments on offshore and subsea structures; a key feature of this Data Logger is its ability to monitor the weather conditions, specifically the acceleration of waves, which is helpful for matching computer modelling scenarios against real-world conditions.

Kelp Blue created a pilot trial via a computer-generated model of the mooring lines to investigate the tension loads on their floating structure. In order to confrm the tension loads on the computer model, DLM was employed to custom build subsea load cells and data loggers.

The requirements for the monitoring equipment were as follows: to have a 25-year lifetime, a deployment depth of 20 metres and the capability to observe data for long periods of time. Due to DLM’s unique ability to custom design specialised equipment, these requirements, as well as the environmental challenges that were indicated with the project were carefully understood and designed accordingly.

Chris Scrutton, Technical Manager at DLM said: “We were really interested when the quote came in for this job as it was our first R&D project for the aquaculture industry, specifically a Kelp farm. We were able to use our standard subsea equipment with modifications to the structural monitoring brief. Kelp Blue needed specialised equipment in order to prove the tension load on the mooring lines of their floating structure, therefore, we custom built data loggers to monitor the load.

One of the challenges that came with the project was the requirement for the data logger to be simple enough for divers to collect the data on a short dive time. Therefore, we designed the data logger with the application in mind, specifically using wing nuts, making sure they were easy to undo in a short amount of time and more accessible to take off if the diver had gloves on.

During the design stage, the packaging of the data logger and mounting it onto the subsea shackles was challenging, our design engineers overcame this problem by specific designs of the subsea pod and 3D printing internal parts of the housing, making sure it is secure.”

DLM are leading the way in the design and manufacture of custom equipment for the offshore and subsea industries, with aquaculture and sustainable projects seem to be no stranger to them. With past projects in the renewable energy industry including the monitoring of array cables for an offshore wind farm and future projects including solar array.

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Talurit Group unveils an updated brand identity reflecting the advancements of the industry

Thursday, 10th February 2022

Talurit Group is a well-established manufacturer of equipment and systems for mechanical splicing of wire and wire rope. With representation in most industrialized countries, their products and solutions are used in a wide variety of sectors around the globe. Talurit Group starts the new year by announcing an updated identity for the Talurit® brand and the group as a whole. The decision was made as Talurit Group continues to grow and evolve in tandem with the advancements of the industry. Leading the way forward in their field by delivering the innovative top-tier products and solutions they are known for.

During the past decade, many industries have advanced and improved with new developments and an increased adaptation of new technologies. The wire rope industry and its related sectors have experienced the same transformation. Talurit Group has been a pioneering force within its field since its start in 1948. With a strong track record of innovative solutions and customer-oriented production, they have expanded further in recent years – continuing to perfect their offering to the market. At the beginning of 2022, Talurit Group announced a strategic realignment of its corporate identity and brand identity.

The changes are made to reflect the evolution of the corporation and brand, in order to show where it stands today and where it is heading – while staying true to its origins. Designed to be globally accepted and work effortlessly across both digital and physical channels, the updated visual identity will help them communicate a unified and clear brand. The iconic blue colour that is strongly associated with the brand remains a vital element throughout the revised visual experience. To coincide with the new look, Talurit Group will update most of its sales and marketing material. The implementation will be done gradually within the group’s various companies.

Victor Lindh, Vice President of Talurit AB, comments:
“While our business continues to transform and develop, it became clear that the perception of the company has not evolved at the same pace. We have introduced many technologic highlights that increase the value for our customers, making our machines more efficient and environmentally friendly. Further, we have strengthened our focus on automatization and can offer complete systems with smarter processes. Our new corporate identity better communicates what the Talurit® brand stands for today and going forward. It reinforces the brand experience and showcases our expertise and strengths.”

Torbjörn Hillberg, Marketing & Communications at Talurit Group, comments:
“The updated branding emphasizes our desire and ability to drive innovations in our field, while also paying homage to our past endeavours and many proven solutions. As a global partner with a wide range of offerings, we have made these changes with all our markets in mind. The new look and feel embody our commitment to safety, sustainability and innovation in addition to mediate the professionalism our customers deserve. The brand rework will position us well for the future and empower the company’s continuous growth.”

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The Wight Shipyard Co announces merger with multinational shipbuilder OCEA

Wednesday, 9th February 2022

East Cowes aluminium shipbuilder secures long-term future with innovative all-share deal that will secure jobs and futures on the Isle of Wight with increased order book 

Britain’s leading aluminium shipbuilder, The Wight Shipyard Co. today announces an all-share merger with the complementary multinational shipbuilder OCEA to create a combined group to capitalise on the fast ferry and offshore renewable energy markets opportunities.

The deal is scheduled to complete by March 2022 and will see The Wight Shipyard Co. nearly double in size, providing significant employment opportunities at the East Cowes yard.

Speaking about the merger, Peter Morton, CEO of The Wight Shipyard Co. commented: “This is a transformational deal for The Wight Shipyard Co. and for the Isle of Wight, confirming the resurgence of the shipbuilding industry in the United Kingdom.

We have been working with OCEA on a number of projects and it was very clear from the outset that we complemented each other in terms of skills and experience and, going forward through the business cycle, both companies can benefit from the synergies and opportunities that this deal presents.

We have enjoyed a first-class working relationship with OCEA to produce vessels and solutions to the highest standards, pushing the boundaries in terms of fuel efficiency, the environment and modern shipbuilding practices.”

The Wight Shipyard Co. has rapidly built a considerable reputation in the fast-ferry market, selling its innovative, high-tech, environmentally friendly vessels both domestically and internationally and was recently awarded a Queen’s Award for Enterprise for Export in 2021. OCEA similarly, was awarded the Baird Maritime award in 2020 for best large patrol boat (Offshore Patrol Vessel OPV270)and is an innovator in the aluminium vessel market with high quality builds for the maritime security, passenger vessels, multipurpose workboats, transoceanic yachts and hydrographic research markets.

The strength of OCEA’s international export market has driven its multinational expansion. Both companies also have complementary expertise supporting the offshore renewable energy sector. Combining the two together will produce a truly global aluminium shipbuilding operation with an order book that offers the business security and sustainability well into the future.

Roland Joassard, CEO and founder of OCEA is excited by the deal saying: “OCEA is expanding internationally to respond to strong demand in these markets and appreciates the new ‘Global Britain’ and refreshed National Shipbuilding Strategy outlook.  Wight Shipyard Co. shares the same DNA, passion and high quality of workmanship as OCEA and its expertise in the fast ferry market complements OCEA’s qualities in other markets. Having worked with the Wight Shipyard Co. and Peter’s team in a number of ways already, we feel that they are the perfect partner to develop global orders for the fast ferry and offshore renewable energy markets.”

Based at their primary yard in Les Sables d’Olonne, OCEA employs more than 500 skilled operators with further facilities in France, including the Caribbean and the Philippines. Following the merger with the Wight Shipyard Co., the Group will share resources and operations in East Cowes that will ramp up significantly, helping the Isle of Wight to ‘level up’ with the creation of much-needed employment opportunities.

Speaking about those opportunities, Peter Morton further commented: “For East Cowes and the Isle of Wight, this is a step change in terms of future employment and security for the outstanding team at The Wight Shipyard Co. We will be able to bring in more high-skilled shipbuilders and technicians as well as providing career pathways all through the production chain. It’s a deal that secures livelihoods and is transformational for East Cowes as the epicentre of aluminium shipbuilding in the UK.”

The merger comes on the back of the news that The Wight Shipyard Co. has secured the contract for two new ‘Uber Boat by Thames Clippers’ with the shipyard already into the design and build of the next generation of Clipper-class vessels utilising the very latest battery-power technology and re-charging options.

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Southbay Civil Engineering Limited to upgrade existing fish quay on North East Coast of England

Monday, 7th February 2022

Southbay Civil Engineering Limited are currently responsible for the refurbishment of the Protection Jetty at North Shields Fish Quay, located on the North East Coast of England.

This marine design and build contract involves the complete refurbishment of the structure, with site works including the installation of bearing piles to support a new deck system.

Due to the reduced load capacity of the existing jetty, temporary works in the form steel grillage is being used to install the new bearing piles through the existing deck. The existing bearing piles have been incorporated as part of the temporary works arrangement.

Outside of this, further works will include the replacement of fendering, the installation of a new king pile wave wall, the replacement of existing services, and the installation of new cladding panels to an existing canopy structure. The new quay design has been developed to utilise the existing structure as formwork throughout the construction process, mitigating against the need for extensive temporary works.

The project involves progressing works within a limited site footprint, with the jetty subject to daily vessel movements associated with the busy fish market.

The fish quay, which dates back to the 13th century, is the main fishing port on the River Tyne and is the biggest producer of prawn in England. The project will help to secure the future of the fish quay by providing improved berthing facilities and attracting larger size fishing vessels.

This is the second such project delivered by Southbay on behalf of the North Shields Fish Quay company, following the award winning upgrade of the Western Quay.

Antony Ballantyne, Operations Director, Southbay Civil Engineering Limited Commented ‘We are immensely proud to be involved in securing the future of this regionally significant fishing port through the delivery of this prestigious scheme.

Together the project team have successfully developed a methodology that will allow us to deliver the works across a limited site footprint, whilst ensuring minimal disruption to the local fishing community.

The project will allow us to showcase our full range of engineering capabilities and further builds on our successful working relationship with the North Shields Fish Quay Company’.

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HTL Group Secure Major Rental Contract Supporting Maintenance of Norwegian Wind Turbines

Monday, 7th February 2022

HTL Group have secured a high-value contract to supply a wide range of specialist bolting equipment to be used during the maintenance works of Nordex Delta4000 Wind Turbines, located onshore in Southern Norway.

The Delta4000 Turbine cuts the cost of energy by delivering much higher yields from any given site and has been designed to allows service operations to be conducted efficiently and safely.

The project, which will utilise HTL’s range of premium-quality rental equipment, is expected to last around 60 days.  Included in the scope of controlled bolting equipment is a range of Hand Torque Wrenches, Square Drive Torque Wrenches, Tensioners and Electric Tension and Torque Pumps.

The tools allow the customer to complete the job safely and efficiently, whilst also minimising the risk of incurring extra costs by having to have to tools serviced or calibrated due to their quality and durability.

Renewable energy is a major focus for the UK, and HTL Group are increasing efforts to support the industry with high-quality rental equipment, alongside their numerous rental benefits that customers can access, such as 24/7 support, tailored rental packages, no minimum hire periods, and rapid delivery times.

About the HTL Group Ltd

HTL Group Ltd, headquartered in Cramlington, UK, is a prominent provider of controlled bolting, flange working, and portable machine equipment, serving a range of industries including oil and gas, power generation, renewable energy, and construction. Established as a specialist in high-quality and reliable bolting solutions, HTL Group has grown to encompass a wide range of engineering tools and services designed to improve safety, efficiency, and precision on industrial projects worldwide.

HTL Group’s core offering revolves around controlled bolting solutions, including hydraulic torque wrenches, tensioners, nut splitters, and associated accessories. These tools are designed to handle high-stress applications and ensure secure, accurate bolting, which is critical for maintaining structural integrity in heavy-duty industries. In addition to supplying bolting tools, HTL provides onsite flange working equipment, allowing engineers to perform flange facing, pipe cutting, and other maintenance tasks with precision, directly on the job site. This capability helps to reduce downtime and increase project efficiency, which is crucial for sectors with strict time and safety requirements.

Beyond their product lineup, HTL Group offers comprehensive training and calibration services.

Their in-house training courses are certified by ECITB (Engineering Construction Industry Training Board) and are designed to upskill engineers in safe, efficient use of bolting equipment. Their calibration services are equally essential, ensuring tools operate accurately, and equipment remains compliant with industry standards.

HTL Group’s global reach is supported by strategically located service centers across the UK and abroad, providing customers with local support, rapid delivery, and technical assistance. Committed to innovation and continuous improvement, HTL frequently expands its product line to incorporate the latest technology, including advanced digital tools that monitor bolting torque, improving operational accuracy.

With a strong emphasis on safety, quality, and reliability, HTL Group Ltd continues to be a trusted partner for industries that require high-performance, precision-engineered equipment to maintain safety and productivity in demanding environments.

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Collett Acquire Plant Speed Wind Energy Fleet

Thursday, 3rd February 2022

Collett increase wind energy carrying capacity with the acquisition of Plant Speed’s wind turbine fleet.

Halifax based Collett & Sons Ltd and Bristol’s Plant Speed have agreed a deal which will see their specialist wind turbine equipment join the Collett fleet.  Taking the decision to remove themselves from the wind energy industry and focus more on their haulage operations, Plant Speed’s entire fleet of super wing carriers, extendable trailers and lift adapters have been acquired by Collett.

With multiple wind energy projects scheduled throughout 2022, Collett took the opportunity to expand their wind turbine fleet, adding Nooteboom super wing carriers, quadruple extendable blade trailers and lift adapters, alongside several specialist adapters including gyrostat tables, loading beds and tower hooks.

As a well-established operator in the wind energy industry, the addition of this new equipment increases Collett’s carrying capacity and adds to their already diverse fleet, providing a definitive range of specialist equipment with which to undertake wind farm development projects.

“This strategic decision for Plant Speed sees our company focus shift from wind turbine delivery projects.” Adds Paul Lomas, Plant Speed, Managing Director.  “Having worked closely with Collett in the past, the decision to amalgamate our fleet into theirs was an easy one to make, and whilst we may not be operating in the wind turbine industry going forward, this is a move which will allow Plant Speed to focus on other specialist haulage operations.”

Speaking about the expansion of the Collett fleet, Managing Director, David Collett adds, “with several projects scheduled, and currently underway, this move sees Collett strengthen our market position.  Having worked in the renewable energy industry for many years, the acquisition of this new trailer equipment is a decisive move for Collett, and one which significantly increases our wind turbine carrying capabilities.”

About Collett & Sons Ltd

Collett and Sons Ltd is a UK-based specialist in heavy transport, logistics, and engineering solutions, providing comprehensive services across various sectors including renewables, nuclear, oil and gas, aerospace, and civil engineering. Founded in Halifax, West Yorkshire, in 1928, Collett has grown from a local haulage business into a nationally recognised leader in heavy transport and logistics, renowned for handling complex and challenging projects with precision and expertise.

With depots across the UK in Halifax, Goole, and Grangemouth, Collett offers a range of services that encompass transport, logistics planning, and specialised project management. They are well-equipped to handle oversised and abnormal loads, leveraging an extensive fleet of specialised trailers, heavy lift trucks, self-propelled modular transporters (SPMTs), and cranes. Collett’s transport expertise includes everything from standard cargo logistics to the movement of extremely large and heavy components such as turbines, bridge sections, transformers, and other oversized structures. Their team is highly trained to navigate difficult routes and manage complex load requirements, ensuring safe and efficient deliveries across the UK and internationally.

Beyond transport, Collett and Sons Ltd provide end-to-end project management and engineering services, often playing a crucial role in planning and executing large-scale projects. Their in-house team of engineers offers route surveys, risk assessments, feasibility studies, and CAD modeling to plan every detail of each project. This meticulous planning phase enables them to address potential challenges ahead of time, from obtaining permits to designing the best route and equipment to handle specific load demands. Collett’s expertise in planning and executing complex logistics makes them a preferred partner for high-stakes projects, such as wind farm installations and nuclear plant component deliveries.

One of Collett’s standout services is its heavy lift capabilities, which include their own heavy lift storage facilities and lifting equipment. This enables them to handle the complete project lifecycle, from initial transport to final installation, with precision handling and positioning. This service is particularly valuable for industries that require precise placement of large machinery and structures, such as renewables and construction.

Collett and Sons Ltd operates with a strong commitment to safety, sustainability, and innovation, investing in the latest equipment and continuously training its staff. Accredited with ISO standards, including ISO 9001, 14001, and 45001, the company upholds high standards in quality, environmental impact, and health and safety. As a family-owned business with decades of industry expertise, Collett and Sons Ltd remains a leading force in the heavy logistics industry, providing efficient and reliable solutions for clients across diverse sectors.

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PSW Technology enters into strategic agreement with Cameron

Thursday, 3rd February 2022

Scana-owned PSW Technology has signed an exclusive license agreement with global oil service provider Cameron – a Schlumberger company.

The agreement, which is the first in Norway for both Cameron and PSW, allows PSW to carry out recertifications of risers produced by Cameron in accordance with OEM (Original Equipment Manufacturer) standards. This means that PSW will do everything from engineering to replacement of parts, assembly, welding and certification, and Cameron will treat PSW’s Certificate of Compliance (COC) as OEM original.

The license agreement is exclusive to Norway, but also allows PSW Technology to undertake recertification assignments for customers in the United Kingdom. The agreement has a firm period of one year, with additional options.

For PSW, the license agreement is an important strategic step in the company’s relationship with Cameron. It allows for an even closer partnership providing added value for customers of both PSW Technology and Cameron.

“The agreement represents an important stamp of approval and a competitive advantage for PSW. It enables our customers to reduce time spent on recertification, with the potential for inspections to be carried out offshore while all repair work is done by PSW’s experts in our premises at Mongstad – a location close to the North Sea and Norway’s most important shipping base for this type of equipment.

Furthermore, the agreement simplifies the recertification process by giving our customers one supplier to relate to from start to finish – instead of having several, which often is the case today,” Oddbjørn Haukøy, CCO of Scana ASA, explains.

PSW Technology is currently Norway’s largest within recertification and modification services to marine risers and has worked closely together with Cameron since 2012. PSW Technology also has a partnership agreement with Schlumberger, owner of Cameron.

“To land the license agreement, the company has undergone a comprehensive revision. Everything we have of procedural work is now approved by Cameron, and today we work according to their systems and routines. This is a partnership we have earned, and we see the agreement as a strong recognition of the competence, facilities and procedures PSW has for engineering, assembly, machining, welding and testing,” Haukøy says.

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Cracks and Fatigue Related Issues of Port Cranes

Thursday, 3rd February 2022

There is a trend for ports to push their container cranes harder for longer, which can lead to cracks and other fatigue-related issues, says Richard Phillips, mechanical engineer, Casper, Phillips & Associates Inc. (CPA).

Lately it seems that ports have been putting off crane purchases and want to use their existing cranes past their design life. Additionally, cranes have been pushed harder than ever as they move record amounts of container traffic. These two factors have led to an increase in maintenance issues related to fatigue on older container cranes.

Although steel can have an infinite design life if the stresses are low enough, designing cranes to have infinite life would increase the cost to the point where it is not competitive.

Ports compete for shipping lines, so if a port pays a much higher cost for a container crane, the box cost will be higher to repay the port’s investment. The shipping lines will go to a port with lower operational costs unless there is some other hourly operational benefit. Even if crane structures were designed to have infinite life, they would still eventually become obsolete due to the increasing size of container ships.

Container cranes 20 years ago did not service ships as large as they do today, so it was unheard of to have a crane with an outreach over 200 ft. (approx. 61m) because container ships weren’t that big. Back then, the largest cranes could pick up a single 40 ft. or twin 20 ft. containers, whereas today the largest cranes can lift tandem 40 ft. containers or four 20 ft. containers.
In addition, the largest cranes have a second trolley to help sort the containers when the primary trolley places them on the dock, which speeds up the yard operations. Today, cranes with outreaches that extend beyond 230 ft. (70m) are common on big ship-to-shore cranes, made to service the largest container ships with beams of 202 ft. (61.5m) with some room to spare for the future growth of container ships.

All that said, crack and fatigue issues may be present in cranes of all sizes.

Steel fatigue of Port Cranes

Many people think of fatigue as “wearing out” of the steel but this is not quite right. Fatigue failure occurs in components subjected to a high number of fluctuating stresses. Under these conditions it is possible for failure to occur at a stress level that is significantly less than the tensile or yield strength for a static load. If the fluctuating stresses are low enough and in an ideal environment, steel has infinite fatigue life.

Cracks can initiate from many sources, such as high cycle fatigue, poor manufacturing, corrosion, or overload events such as snag, earthquake, or storm winds. The initial flaws may be microscopic or macroscopic. Growth rate increases with crack size so a flaw that has grown from microscopic to a detectable size is well along toward reaching critical size. However, if the steel lacks reasonable notch toughness, the critical crack length will be significantly smaller than a steel with excellent notch toughness.

It is very unlikely that someone without training would be able to detect the first signs of cracking or fatigue. It is also unlikely that the operator would notice a change in the performance of the crane, even if they are very familiar with it.

Further, not all cracks are equal—it’s all about risk management. If failure of a structural beam would cause catastrophic failure, it is considered a fracture critical member. If a fracture critical member has a crack, it is not worth the risk of a catastrophic failure to continue operating until the crane can be taken out of service and the crack is repaired.

Fatigue and corrosion failure of container cranes have been rare, but there has been at least one incidence of total collapse and several close calls where imminent failure was avoided because cracks were discovered just in time. Numerous fatigue failures of individual members and connections have occurred but usually loads shift to an alternate load path, avoiding total collapse. Therefore, alternate load paths are an important fatigue design consideration.

Fatigue issues are not always a by-product of overuse. Sometimes the crane design is not robust enough for its specified duty class, while other times there are manufacturing defects that were not caught by the quality assurance / quality control (QA/QC) programs. Also, accidental overload cases such as collision, stall, snag loads as well as high wind events and earthquakes can reduce a crane’s fatigue life.  From our perspective, fatigue problems appear to be increasing due to the record amounts of container traffic.

Managing cracks
Just how critical is the problem when cracks appear? The answer depends on how much damage the area can safely withstand and the consequences of its failure. Damage due to a crack is directly related to how fast the crack can grow. The study of crack propagation is called “fracture mechanics”. Fracture mechanics combines analytical methods with experimental research to quantify a crack’s grow potential.

The consequences of a member or joint’s failure also plays a part in determining the criticality of a crack. A member or joint that has no alternate load paths and whose failure would cause a crane to collapse is called fracture critical. Within fracture mechanics, one methodology to manage cracks and other defects is using “damage tolerance”.

Pioneered by the aerospace industry, the idea behind damage tolerance is that the engineer assumes there is a crack of the smallest size with a given inspection method. From there, the engineer can calculate the crack growth rate that will occur during normal use. This analysis is then used to set the appropriate inspection intervals based on the criticality of the member or joint. By calculating the crack damage tolerance of a crane and implementing the resulting inspection program, chances are much better that repair work can be identified and scheduled to minimize operational down time.

Much like your car, the oil needs to be changed more often than the timing belts. The same is true about cranes; some areas need more attention than others. It is typically dependent on both the duty cycle the cranes were designed for and how the cranes are operated. A damage tolerance program integrates these parameters to provide a rational basis for effective inspection intervals.

Design specifications for container cranes
Design specifications for container cranes have been developed by consulting engineers, port authorities, and shipping companies. The specifications usually require that the design of various elements comply with domestic and international design codes.

A consultant is often hired to validate if the crane structure and its components meet the specification requirements. The consultant must have the engineering expertise and knowledge of both local and foreign codes. Ensuring a crane design meets the design specifications reduces the risk of structural failures by ensuring appropriate materials and loads are used.

Unlike other industries, the container crane industry has no formal body for investigation, documenting and reporting structural failures. These failures are often a source of embarrassment, liability, or litigation and therefore remain confidential. If an accident occurs, disputes are usually settled through private litigation. This is unfortunate because the entire industry would benefit from sharing such information.

Best practice is to prevent accidents, so it is always a good idea to have a qualified engineer review the crane manufacturer’s design before construction, as well as having a good maintenance program once the crane is in service.

High cycle fatigue, corrosion

Typically, port cranes are designed only considering high cycle fatigue. Overload events are checked for strength but are not typically included in the fatigue analysis. Several moving load locations are considered and an equivalent lifted load for fatigue is decided based on the crane classification or specified by the purchaser. The more realistically the moving load paths model how the crane is used, the more accurate the results of the analysis will be.

However, even the most thorough calculations have their limitations. They have many built-in assumptions that may not be accurate. For instance, if a weld has poor fusion or porosity, it may not be detected by a surface inspection such as a visual, dye penetrant, or magnetic particle testing. This weld can have subsurface cracks or defects that can grow to the surface much faster than calculations predict. Design to a fatigue criterion is no guarantee that fatigue will not occur. On a statistical basis, fatigue design does provide reasonable fatigue protection.

Another vital point to consider with Port Cranes is corrosion. Of course, container cranes exist in a relatively hostile environment surrounded by saline and acid laden air. Corrosion is an ever-present enemy that is no mystery to any maintenance department or owner.

Techniques and materials for preventing corrosion are well known and the failure to maintain a corrosion-free crane is tantamount to accepting a reduced life for the affected crane components.

With advancing age, poor structural maintenance programs become obvious at an exponential rate. For some container port cranes it is too late, and they should be retired. In other cases, it is possible to increase the life of port cranes well beyond the original purchase specifications. If the design of a structural component is controlled by strength and not fatigue, its design life may well exceed the required minimum fatigue life.

Life extension of container cranes
In this current economic environment, there is a lot of uncertainty surrounding steel fabrication. Steel prices, component availability, labor prices, workforce availability, etc. are all extremely volatile. Port Crane owners want to protect themselves by procuring cranes on a firm fixed fee contract. Such a contract includes all costs associated with crane procurement including delivery and commissioning for a single price (you’ll forgive me for not publishing figures). Likewise, crane manufacturers protect themselves by building in a lot of costs due to the uncertainty surrounding steel fabrication.

This has further increased the number of port cranes owners taking interest in extending the life of cranes. A crane may have been designed for two million cycles, but the crane owners want to study the business case for upgrading the crane structurally and mechanically to extend the life up to three or even four million cycles.

As cranes are used beyond their original design life structural strengthening is a common method to extend the useful life. After the initial investment, strengthening will lower the stresses in critical areas, which in turn decreases both downtime and inspection costs. If a critical area has been properly strengthened, it will be less likely to develop cracks and will require less frequent inspections.

Crane upgrades come in many forms. The most common crane upgrades CPA get involved with are:

  • Crane raises
  • Boom extensions
  • Rated load increases
  • Increasing the useful life of the crane

Raising the crane and extending the outreach helps extend the useful life of the crane by allowing the crane to service larger vessels. If the cranes are large enough to service the vessels calling at the berth, the cranes may need structural strengthening to allow them to be used longer. Strengthening can help prevent issues like cracks; this minimizes downtime, and the crane can be more profitable to operate.

However, some cranes begin having significant structural issues and, like a used car, become too expensive to operate because the maintenance costs and down-time are too high.

Repairing cracks
If a crack is detected it can be repaired. However, due to residual stresses, and other limitations from the on-site crack repair, detectable cracks may re-develop after fewer load cycles. If cracks are found, further engineering analysis should be conducted to determine what repairs should be made, plus due consideration should be given to increased inspections and possibly reinforcement. The most common fix for cracks is to grind out and weld repair them.

Remember though, the best solution is preventing cracks from forming. Cranes can benefit from designs by experience engineers who have put in time to learn and master the subject of fracture mechanics. Fracture mechanics and related research have shown which types of designs and connection details are less likely to have fatigue issues like cracks.

Don’t turn a blind eye
The most important defence against structural aging is targeted inspections performed at specified intervals. Of course, operators and maintenance personnel should be trained to inspect constantly at every opportunity. This is the best form of insurance and, like buckling a seat belt, it is free. However, this should not replace inspection by trained technicians working at known intervals.

Periodically, all cranes should be examined by a technician that has broad, generic experience with structural maintenance problems. Dangerous cracking and deterioration can escape even the most conscientious visual inspection. A sizeable fatigue crack can close so tightly that it may not be visible to the naked eye even if known to exist. The only reliable way to find fatigue cracks is by non-destructive testing (NDT) methods by a qualified technician.

An engineered inspection manual can tell inspectors where and how often to look for cracks. A good inspection manual will show which NDT tests to run on the welds most likely to have fatigue cracks develop. For container cranes, maintenance windows are available in between berthing vessels. During this time, the cranes are not in service, and NDT can be performed. The inspection methods most used are visual, magnetic particle, or ultrasonic, and will depend on how critical the member is to the load carrying capacity of the crane.

Inspection by outside technicians is expensive but can save property and lives. Like all other risk / benefit alternatives there is no universal answer to how much one should spend to reduce risk.

The key to getting the best life out of these port cranes is to have a good inspection manual and a responsive maintenance program. Creating post design life structural inspection manuals is a widely accepted service many crane owners currently utilize. Discovering a crack early can not only limit the scope of the repair but also limit unscheduled downtime.

Liferafts International DiveCo Marine Civils Sealane Maritime Engineering
Seaplant Marine & Offshore Magazine

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