The Criticality of Fire Prevention in Shipping

Lessons from the North Sea Tragedy: Understanding fire risks in the era of electric vehicle transportation and essential strategies for prevention and suppression

A recent disaster involving a major fire onboard a cargo ship, the Fremantle Highway, off the coast of the Netherlands has underscored the risks and challenges associated with shipping.

The ship, loaded with around 3,000 cars, including 25 electric vehicles (EVs), was en route from the German port of Bremen to Port Said in Egypt when a fire broke out.

The incident led to one fatality and several injuries, highlighting the necessity of enhanced fire safety measures in maritime transportation.

The Perils of EV Transportation at Sea

Electric Vehicles (EVs), powered by lithium-ion batteries, have emerged as an innovative solution to curb greenhouse gas emissions.

However, while their adoption in terrestrial transportation has been substantial, their carriage in maritime transport introduces a set of unique fire safety challenges.

One of the most significant risks associated with EVs on ships is the propensity of lithium-ion batteries to ignite under certain conditions, a phenomenon known as ‘thermal runaway‘.

This typically occurs when a battery overheats, causing a reaction that further increases the temperature and can lead to the battery catching fire.

The likelihood of thermal runaway increases if batteries are damaged, defective, or improperly handled or stored.

What makes these fires particularly dangerous is that they are notoriously difficult to extinguish.

When a lithium-ion battery ignites, it can produce its own oxygen, meaning a fire can continue even in the absence of ambient oxygen.

This makes traditional fire suppression methods, like smothering, less effective.

Further complicating matters is the issue of ‘stranded energy’.

After an initial fire involving a lithium-ion battery is extinguished, the battery can reignite.

This can occur hours, or even days, after the original fire, which presents a unique hazard not typically encountered with traditional vehicle fires.

To add to the risk, a fire originating from a lithium-ion battery produces toxic gases such as hydrogen fluoride and phosphorus pentafluoride, posing both a health risk to those in the immediate vicinity and a potential environmental hazard.

Moreover, the high energy density of lithium-ion batteries can lead to fires that are far hotter than typical combustible material fires.

The intensity of such fires can make them difficult to control and suppress, while also increasing the risk of the fire spreading.

Finally, the sheer volume of EVs transported on some vessels can exacerbate these risks.

With larger numbers of EVs in close proximity, a fire that starts in one vehicle can quickly spread to others, leading to a much larger and more dangerous situation.

This makes early detection, isolation, and suppression of fires critical in scenarios involving the transportation of EVs at sea.

Best Practices for Fire Suppression and Prevention Onboard

Fire safety in shipping, particularly concerning EVs, requires proactive measures for prevention, early detection, and effective suppression.

Leading Survival Technology solutions provider Survitec emphasises the importance of early fire detection systems, specially designed to monitor lithium-ion battery conditions.

Indicators like heat, smoke, popping sounds, and toxic gas emissions from batteries can serve as early warnings.

Current safety innovations focus on monitoring car decks for these early-stage fire conditions.

Survitec is investing in developing new solutions capable of pre-ignition monitoring, highlighting the importance of the type and location of sensors for effective detection.

New solutions are also emerging in the field of fire suppression.

An integrated graphical monitoring system, currently under development, aims to provide real-time status of all the fire-protected zones onboard.

It aims to link all the detection systems and sensors onboard for remote or local activation of a compartment’s fire suppression system.

Fire Suppression Techniques and Challenges

While tackling a fire onboard, understanding the unique nature of EV battery fires is crucial.

Such fires generate explosive and toxic gases, increasing the fire’s intensity and size, and can potentially reignite until the battery is completely burnt down.

This presents a real challenge for traditional gas-based fire systems.

Water-based solutions provide the best cooling effect.

However, they also introduce the risk of impacting ship stability due to the volume of water needed.

Therefore, an effective drainage system is a must.

Research suggests that a water mist system is the most effective for this type of fire, and numerous research and development initiatives are looking into the best water spraying method for EV fires.

The Path Ahead: Prevention and Early Detection

“Prevention is certainly better than the cure,” says Rafal Kolodziejski from Survitec.

Early monitoring and detection are increasingly important safety factors for ship operators and crew.

With an EV cargo, the earlier the crew can detect pre-fire conditions, the better. For instance, ship operators are being urged to increase the space between each vehicle or reduce the number of units transported.

As the maritime industry continues to grapple with these challenges, the recent North Sea incident serves as a tragic reminder of the importance of fire prevention and early detection in shipping, especially in the era of EV transportation.

Striking the balance between the efficient transportation of goods and the safety of crew and cargo will be pivotal in the shipping industry’s future.

Survitec launches major service centre expansion in Southampton

New 10,000 Sq. Ft. Facility Boosts Safety Equipment Servicing Capability

The internationally-renowned safety technology provider, Survitec, has significantly expanded its UK service operations with the inauguration of a comprehensive service centre in the Port of Southampton.

This facility is purposefully designed and fitted out to perform specialised servicing and repairs for life-rafts, lifejackets, immersion suits, and a host of other safety equipment. The large-scale expansion is set to provide increased capacity and expedited servicing times for an array of clients including those in the cruise, defence, Border Force, and commercial shipping sectors.

Optimised positioning for enhanced customer service

Survitec’s Operations Manager, Iain Allan, based in Southampton, has pointed out the strategic positioning of the new centre, stating that it will enable “swift access in and out of the docks” and thus, ensure an improved level of service to ships. He said that “many months” were spent in the search and fitting out of this “right facility in Southampton”, which is expected to “service more than 2,000 life-rafts a year” with potential for further expansion.

Upgrades and expansion

As a result of its major expansion, Survitec has not reduced its servicing turnaround time by up to 50%, and increased its workforce by 20% to accommodate the requirements of the new Service Centre. The Southampton facility is well-equipped with a 3,000-litre water tank for testing life-rafts and rescue boats, a special area dedicated to lifejacket servicing and repair, and a unique platform to accommodate large life-rafts.

Survitec’s Managing Director, UK Marine, Ronnie Vettese, has highlighted the benefits of the centre’s location in facilitating better management of their offerings to support regional customers. Looking forward, he mentioned that the new facility will “enable us to expand upon our customer offering” by introducing services related to fire, lifeboat, and mooring equipment.

Launch ahead of major marine exhibition

The latest addition to Survitec’s service centres was strategically launched this week, coinciding with Seawork, Europe’s largest commercial marine and workboat exhibition, held in Southampton.

This strategic move further cements Survitec’s position as a global leader in the supply, inspection, testing, servicing, and repair of safety and survival equipment. The company’s extensive global presence spans over 400 service centres, covering 2,000 ports worldwide.

Survitec unveils remote support service for inert gas systems in the maritime industry

New remote support service introduced after successful pilot tests

Survitec, a global provider of survival technology solutions, has launched a new remote support service for its inert gas (IG) systems. The development follows a successful completion of pilot tests with a leading tanker operator. The Maritime Protection brand, specialising in inert gas, was the frontrunner in this new initiative.

The remote support service is set to offer a quicker access to inert gas expertise for IG system operators. It will assist in averting system failures and maintain system efficiency.

Enhanced system performance and cost reduction

Bernt Øhrn, the Managing Director of Maritime Protection, stated: “Inert gas systems are essential and complex safety systems. If they fail, it’s effectively treated as an emergency situation requiring immediate remedial action. We have developed a way of supporting our customers remotely, reducing vessel off-hire through system downtime, and cutting back on the need to send out service engineers to the ship, which can be costly.” This remote support will enable specialist IG engineers to access the system remotely for system tuning, fault diagnosis and solution arrangement.

Official unveiling at Nor-shipping event in Oslo

The remote support service, which serves as an IG monitoring, diagnostics and control service, was officially launched at the Nor-shipping event in Oslo, following successful pilot tests aboard a 40,000dwt product tanker.

The call for a remote support solution became more apparent during the Covid pandemic. Travel restrictions limited engineers’ ability to board vessels to diagnose and repair faults in situ. A prominent European-based tanker operator and long-standing Maritime Protection customer assisted in the development of the solution, which is now functioning aboard 32 product tankers.

Virtual support service to optimise safety systems

Øhrn further elaborated: “Both companies agreed that a virtual support service where our inert gas engineers could log in to access the IG system remotely, diagnose any problems and fix them immediately, without having to travel out to the ship, would not only reduce operational costs but keep this critical safety system operating optimally.”

In case of system breakdown or a situation requiring physical presence, the shore-based technicians will be able to identify the problem and provide the necessary spare parts in advance. This will cut down on the time spent onboard and ensure that the fault can be repaired in one trip.

Secure and efficient system operation

Remote Support employs a secure VPN (Virtual Private Network) gateway, which can be installed without any system wiring or modifications. This is compatible with all Maritime Protection IG and nitrogen systems. Additional security measures, such as a “key” switch, are included to quickly enable or disable remote support and internet access.

Marine Protection is offering this Remote Control as an annual fee-based leasing model. It will include crew training, spare parts for the IG system, and regular system tune-ups to reduce fuel consumption and increase system stability. Øhrn concluded by saying, “Our technicians can tune up the IG system remotely to stabilise the oxygen content, optimising fuel consumption, which can realise significant fuel cost savings for each IG system.”

Early detection is key to prevent EV fires on ships says Survitec

Following several high-profile ship fires involving electric vehicles (EVs), leading Survival Technology solutions provider Survitec has advised operators of vessels transporting hybrid and EVs – such as ferries, ropaxes, roros, PCCs and PCTCs – on how best to prevent and control fire onboard ship involving lithium-ion batteries.

As part of ongoing initiatives within the industry to improve safety, there is a drive to develop early fire detection systems to better monitor and protect car decks and lithium-ion batteries installed in vehicles onboard. Any slight deviation in their properties can provide an early indication that conditions are right for a fire and afford time to take preventative measures to protect or quarantine hybrid and EVs.

Pre-ignition signs

Pre-ignition signs of a battery fire include heat and smoke from parts of the vehicle where the battery is usually placed, popping sounds from battery cells, and toxic gas emissions.

While early detection solutions are readily available, Rafal Kolodziejski, Survitec’s Head of Product Support & Development – Fire Systems, said that these systems are not yet adapted to allow for pre-fire conditions specific to lithium-ion batteries. That is, not only smoke and heat but also gas emissions, including, potentially, sound frequencies related to gas release.

Kolodziejski said: “Monitoring car decks for early-stage fire conditions – typically any fluctuation in temperature or atmospheric condition – is critical to preventing fire propagation. The type and location of sensors are vitally important.”

Kolodziejski said that Survitec is investing “heavily in the development of new solutions capable of pre-ignition monitoring” and is working with a major ship operator to design a comprehensive fire detection and extinguishing system for the EV cargo deck of a new build PCC (Pure Car Carrier).

New solutions

Currently in development, the company’s integrated graphical monitoring system can provide real-time status of all the fire-protected zones onboard. The monitoring system will link all the detection systems and sensors onboard to allow for the remote or local activation of a compartment’s fire suppression system.

“An EV battery fire is different to any other type of fire in that the battery generates explosive and toxic gases, increasing the size and propagation of the fire,” explained Kolodziejski.

“The heat is, therefore, more intense, and an extinguished fire can potentially reignite at any time until the battery is completely burnt down. This presents a real challenge regarding gas-based fixed fire systems, such as CO2. Traditionally, a system pack has sufficient gas for just one discharge in the event of a fire. Currently, classification societies propose that double the gas volume is provided, but this may not be enough to control fire or prevent reignition,” he continued.

Prevention is certainly better than the cure

Water-based solutions provide the best cooling effect, which is crucial in the case of this type of fire. However, the volume of water required to control an EV deck fire could impact ship stability, so a suitable drainage system must also be considered.

Research shows that a water mist system has the highest efficiency for this type of fire. However, because battery modules are installed under the floor in most EVs, the most significant heat will be generated at deck level. There are various R&D initiatives investigating the best water spraying method for this. One of these solutions is a pop-up nozzle that sprays water mist upwards and fixed, and mobile solutions are now at the testing stage.

Fire onboard ships where EVs may be involved is now a genuine industry concern, and, referring to guidelines the European Maritime Safety Agency (EMSA) published in May last year, Kolodziejski highlights some of the recommendations currently being proposed to limit fire propagation and allow for effective monitoring of the environment around EV cargoes and also easy access in the event of a fire.

For example, EV car-carrying ship owners are urged to consider increasing the space between each vehicle or reducing the number of units transported. Some ship operators are already requesting that batteries in used or second-hand EVs are disconnected prior to shipment, especially if EVs or their batteries show signs of damage.

“Prevention is certainly better than the cure at the moment,” said Kolodziejski. “Early monitoring and detection are becoming increasingly important safety factors for ship operators and crew. With an EV cargo, the earlier the crew can detect pre-fire conditions, the better.”

Survitec Marine Evacuation System Life Ark gains full-type approval

Global Survival Technology solutions provider Survitec has announced that its new Marine Evacuation System (MES) Life Ark has received full-type approval from classification society Bureau Veritas.

Certification of Life Ark, a helical slide-based MES for small to medium-sized passenger vessels, follows the successful completion of stringent design and evacuation trials required under the SOLAS Convention and the EU’s Marine Equipment Directive.

Protecting passengers and crew on  vessels with a freeboard height of up to 23 metres and passenger capacities ranging from 300 to 1,500 persons, such as ferries and expedition cruise ships, Life Ark builds on Survitec’s success and growing market share in the larger cruise ship market, where the company has installed some of the largest dry-shod MES systems on the most advanced cruise ships in the world.

Richard McCormick, AES and MES Product Manager at Survitec, said: “There is demand for an extended service MES solution with high functionality to serve the smaller passenger vessel market. We went back to the drawing board and took a fresh look at how we could adapt our cruiseship evacuation technology to meet the requirements of this market. Bureau Veritas Type Approval means that the smaller passenger vessel segment can now benefit from the same revolutionary helical slide-based MES used in the larger cruiseship segment.”

Andreas Ulrich, Global Market Leader Passenger Ships & Ferries, Bureau Veritas, said: “Marine Evacuation Systems have been proven as a safe and reliable means of survival and Survitec is one of the pioneers having developed such systems. BV is proud to have been chosen as a partner for the new Life Ark and has recently issued a MED TA certificate for the new system.”

Using the fully enclosed, dry-shod helical (spiral) slide design inherent to Survitec’s popular Marin Ark 2 MES and Seahaven AES, Life Ark ensures a safe, rapid and comfortable descent for people of all ages and abilities. There is no restriction on the size of individual users, and crew can ascend the slide to assist passengers if necessary.

Fully enclosed single and double helical slide options are available in an asymmetric arrangement. The Life Ark comprises self-righting approved liferafts for 50, 100, 150 persons, with SOLAS A, B and HSC emergency packs.

Inflation takes place automatically within 60 seconds and minimal crew interaction is needed during this phase. Multiple buoyancy compartments provide stability and safety in the most challenging sea conditions.

Valaris renews service and maintenance contract with Survitec

Offshore drilling operator Valaris has confirmed it has renewed the service agreement it has in place with Survival Technology solutions provider Survitec for an additional three years.

Valaris said the extensive network of more than 400 service stations around the world combined with streamlined lifesaving appliance maintenance were key factors in the decision to remain with Survitec.

The master service and supply contract, originally signed in 2016, covers the annual and five-year inspection, servicing, and maintenance of LSA, including lifeboats, davits, and fast rescue crafts across Valaris’ global fleet of 11 drill ships, 5 semi-submersibles and 36 jack-up rigs.

Survitec’s ‘single point of contact’ business model rolls four functions into one: technical services, customer services, operations and administration.

Jim Cook, Head of Business Development – Energy, Survitec, commented: “This significant development is indicative of the global energy sector’s preference for a company capable of servicing third-party, multi-brand safety and survival equipment through a single point of contact.

“We are seeing a marked increase in operators looking for more customer-centric service arrangements, so we are obviously delighted that Valaris – the world’s largest offshore drilling company – has renewed. It shows Survitec is the valued and trusted partner to the offshore oil and gas industry.”

Cook added: “Ultimately, offshore oil and gas operators benefit from a single service provider without the administrative burden and costs associated with contracting multiple service partners.”

Jeff Walker, Sales Manager – Americas, Survitec, said: “With an increase in the number of projects coming on stream and vessels returning to service, offshore oil and gas operators do need to ensure their lifesaving appliances are regularly inspected, serviced and maintained, with up-to-date certificates.”

Survitec unveils new fast rescue boat for emergency first responders

Global Survival Technology leader, Survitec, has introduced a new lightweight design inflatable rescue boat capable of rapid single-point inflation to meet the unique demands of waterborne search and rescue operations by the emergency services.

The Survitec 420 GP/GPM FR (Fast Rescue) boat, which was unveiled at the Emergency Services Show, is based on military-grade technology. The seven-person boat is unique in that it is the emergency services sector’s first 4.2m long fast rescue craft that can be rapidly inflated using just one nine-litre self-contained carbon air cylinder. The GPM 420 is light weight and is easily deployed, handled and operated to the criteria of DEFRA. The new 420 GP/GPM FR takes just 40 seconds to inflate.

Scott Tonks, Maritime Defence Category Manager, Survitec, said: “We have redesigned the manifolds to ensure the optimal amount of air is going to each compartment of the boat to minimise the amount of air expelled though pressure relieve valves.”

“Smaller, fewer cylinders are needed for a more rapid inflation, which significantly increases the speed of deployment, resulting in faster emergency response times, potentially saving more lives.”

Designed for rescues in fast flowing waters and areas prone to flash flooding, the 420 GP/GPM FR boat is 4200m long and 1800m wide has a maximum payload of 903kg. The boat is manufactured from a durable Hypalon 1670dtex fabric, and benchmarked against SOLAS and DEFRA rescue boat standards.

Tonks added: “Before now fire brigades had to tow trailers and launch boats from slipways potentially some distance away from the location of the emergency, which obviously places limitations on water rescue capability.

“With this solution, responders can access the immediate emergency area, get the boat in the water safely and quickly, and get on with the job of saving lives. We’ve been working with several fire brigades during testing stages who are very interested in this product.”

Survitec launches ‘Head Start’ programme for ship fire safety

Survival Technology specialist Survitec has introduced a new programme to ensure shipowners are fully equipped to protect crews and assets throughout the entire lifetime of their vessels.

The “Head Start” programme is a complete through-life supply and service initiative. Survitec has been working with shipowners, designers and ship builders from first designs to ensure that vessels are protected with the most advanced safety solutions possible and to ensure they can be operated and maintained efficiently throughout the vessel’s lifetime.

Finn Lende-Harung, Commercial Director – Fire Solutions, Survitec, said: “Being involved from the planning phase onwards, we can help to optimise safety system design, installation and commissioning as well as ensuring shipowners benefit from the most cost-effective means of managing their ongoing system training, servicing, and certification requirements.

“From the very beginning of a project, shipowners have immediate access to our global network of experts through a single point of contact. We’re providing a complete one-stop safety shop from the design phase through to ongoing vessel operations. We’re setting shipowners on course for a lifetime of safety at sea.”

Rafal Kolodziejski, Survitec’s Head of Product Support and Development – Fire Systems, cited the increasing number of newbuilds opting to run on alternative fuels as one of the main reasons why the initiative is becoming so appealing.

He said: “The industry is well advanced in fire extinguishing technologies and mediums for gas and methanol fuelled fires. However, li-ion batteries, ammonia, and hydrogen are relatively new marine fuel and powering options, presenting very different challenges for shipowners and operators.

“The risk of fire from these alternative fuels can be substantial, requiring a higher focus on prevention and the monitoring of gas leakage and temperatures. When we are involved in a newbuild project from the beginning, we can better mitigate any risk further down the line through quick-response fire system solutions.”

Lende-Harung added that as the shipping industry moves towards digital technologies and the possibilities of autonomous shipping – accelerated perhaps by current operational and financial challenges: “Remote monitoring, diagnostics and online maintenance will in the future become a major consideration at the design stage.”

Survitec’s fire system experts can monitor system conditions, support ship crew with trouble shooting and adjustment of equipment shoreside without having to physically attend the ship,” said Lende-Harung. “A remote VPN gateway connects to the fire safety system operator panel via an ethernet cable or Wi-Fi through a secure gateway.

“We can connect at short notice in case of issues threatening normal operation or to provide training to ship crews. For example, we can help a system operator tune-up their inert gas system to reduce fuel consumption, reduce maintenance and increase system stability. Remote diagnostics and the monitoring of fire safety equipment will become a major factor in the swing towards autonomous shipping.”

Survitec to supply advanced firefighting systems to eco ferries

Survival Technology solutions provider Survitec has secured a contract to supply advanced fire-fighting systems to a pair of 48,000grt LNG dual-fuelled eco ferries under construction at Finland’s Rauma Marine Constructions (RMC) for Australian shipowner Spirit of Tasmania (TT-Line Company Pty Ltd).

“This is a major order from a returning customer,” said Michał Peruga, General Manager, Survitec, Poland. “This contract win demonstrates our ability to go beyond simple equipment supply to being able to provide a complete bespoke fire safety solution for all areas of the ship, from bow to stern.”

Survitec’s extensive scope of supply includes Novenco Fire Fighting (NFF) XFlow Water Mist systems for machinery spaces and accommodation areas; an NFF XFlow Deluge system for car decks; a dry powder fire suppression system for the ships’ LNG bunkering stations; a deep fat fryer fire extinguishing system and a CO2 system for the vessels’ galley ducts.

Peruga added that Survitec’s technical team helped the shipyard and owner navigate complex mandatory regulations in relation to the design, installation, and operation of a fire suppression system.

“Our NFF XFlow technology uses a combination of fine water droplets and water mist. Consequently, the system can be activated immediately, without the need to evacuate first, which reduces the risk of damage to machinery and other critical installations. It makes the system more efficient for certain types of fires compared to high pressure water mist systems, even though both systems have to pass the same test,” said Peruga.

Mika Laurilehto, CEO, Rauma Marine Constructions, said: “The agreement we have with Spirit of Tasmania is for a pair of world-class ferries capable of meeting exacting standards in terms of safety, reliability and customer service. 

“Survitec’s ability to offer a full range of fire safety solutions and also local after care services allowed us to streamline the design and procurement processes in a manner that benefits both the yard and the shipowner.”

Finn Lende-Harung, Commercial Director of Fire Solutions at Survitec, said: “Dual fuel systems and alternative fuels are setting new standards for fire safety in the industry. Shipowners and builders are looking for suppliers capable of providing technical support to high-value projects throughout the entire life span of a vessel. We work hard not only to keep on top of the latest changes in legislation but also to offer through-life benefits that help with the total cost of ownership – from the design and construction phase through to operation and servicing.”

Having successfully designed, installed and commissioned the advanced fire-fighting systems aboard Yara Birkeland, the world’s first fully electric, autonomous containership, Survitec is fast becoming the eco ship builder’s go-to fire systems choice supplier.

“The success of that project marked an important milestone for Survitec, placing us at the forefront in the development of fire safety technology for the next generation of environmentally sustainable ships,” continued Lende-Harung.

When delivered in 2023 and 2024, Spirit of Tasmania’s new 212m long ropaxes will each have capacity to ferry 1800 passengers across Bass Strait, on the company’s Geelong to Devonport, route which connects the island state of Tasmania with mainland Australia.

The new vessels will replace the Spirit of Tasmania I and II, both built in Finland in 1998.

Survitec: Better crew training needed for CO2 firefighting systems

Survitec is advising the maritime industry to ensure fixed fire-fighting systems are commissioned by their original equipment manufacturers and that crews undergo basic system configuration training, following a spate of incidents where ship fires have been exacerbated through incorrect use or installation of CO2-based extinguishing systems.

While the International Maritime Organization’s FSS Code provides engineering and design standards for all types of fire extinguishing systems, there are no mandatory regulations governing their installation and commissioning, only recommendations. Standards on operation and maintenance have improved over the last years but in many cases, they are still seen as guidelines

Survitec said that although these guidelines should be followed, there have been several incidents in recent times where fixed fire extinguishing systems have failed.

“While it is difficult to put a number on all the fire related incidents where incorrect installation, operation or maintenance of a fixed firefighting system has resulted in system failure, injury or death, the subsequent accident investigations offer a difference perspective on the effectiveness of the current regulations and guidelines,” said Mats Hestmann, Survitec Group QHSE Manager.

“Fire safety systems are inherently designed to protect and save lives. However, if these systems are incorrectly used, installed or insufficiently inspected and maintained, the consequences can be severe,” said Hestmann.

MSC.1/CIRC 1318, the Guidelines for the Maintenance and Inspections of Fixed Carbon Dioxide Fire-Extinguishing systems was released in June 2009 and have been adopted by most Flag states, but some are still following their own set of standards.

Hestmann, believes that it would be beneficial for MSC.1/CIRC 1318 to become even more structured as is the case with MSC 1432, clearly defining what should be inspected. Once the majority of flag states have adopted an MSC circular, it then becomes a resolution making it mandatory.

He adds: “Great improvements to safety have come as a result of IACS Z-17 Service provider approvals. However, it’s not the failure of the firefighting system that is resulting in so many incidents, but rather the lack of system knowledge and poor operator training.

“There should be more effective rules governing system training; because a crew member is familiar with one firefighting system doesn’t mean they are appropriately trained to use another manufacturer’s system or even a different system configuration. While the product itself might be standard, the layout of the system, the location of valves, cylinders, and vents and so on will differ from ship to ship. Certainly, crews need to be better trained in the use, operation and maintenance of these systems.”

Erik Christensen, Technical Director Fire Fighting said: “We have seen a number of incident reports where human error in the use of firefighting systems is a common factor. Valves have been closed when they should have been open, ventilation flaps left open with main generators still running during the fire.

“Carbon Dioxide is a dangerous gas and any system that has been incorrectly installed, maintained or operated could not only fail to extinguish the fire but be very harmful to the crew.”

As the market leader and a champion of maritime safety initiatives, Survitec is fostering greater fire safety and systems awareness across the industry. It has already issued advice notices and is raising wider awareness of the need to ensure firefighting systems are correctly installed, regularly maintained, serviced and that crew operating the systems are trained and understand how to use the specific system.

“We want to ensure that operators and crews have a much better understanding of how fixed firefighting systems operate and the importance of regular, properly carried-out maintenance. With greater knowledge, they will be able to overcome many of the operational challenges they face and prevent system failure when it is required in an emergency.

“Crews can be better equipped to fight fires more effectively, more safely, but any initiative needs to work in harmony with the rules, some of which could do well to be revised,” said Hestmann.

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