Rethinking detection for complex storage environments: Patol sets out the future of warehouse safety

Patol Managing Director Iain Cumner explains how advanced detection solutions improve warehouse safety, compliance, and performance across automated, high-bay environments

Warehousing is changing.

Facilities today are taller, denser, and increasingly automated – designed to support the pace of modern 24/7 supply chains.

For site and facilities managers, the stakes are high.

Delays in fire detection don’t just mean lost stock – they put staff at risk, halt operations, and can damage hard-won reputations.

Let’s face it – cost continues to drive fire detection decisions.

But with UK insurers and regulators raising the bar on compliance, including BS 5839-1, the right solution now matters more than ever.

The challenges of modern warehousing height & stratification

In high-rack warehouses, there are specific areas that make conventional detectors less effective:

  • Height & smoke layering: In tall warehouses, smoke can form layers (known as stratification) rather than rising to ceiling-mounted detectors, delaying alarms.
  • Air movement: Ventilation, fans, or conveyor systems can push smoke away from detectors, while dense racking and tight packing of stock can prevent smoke reaching detectors.
  • Access issues: In high racks or automated storage systems, installing and maintaining detectors is expensive and disruptive.
  • Special environments: Cold storage, dusty sites, and humidity add further complications – from frozen detectors to false alarms.
  • Even subtle fluctuations in temperature can interfere with detectors.
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The result? Increased downtime, costly false activations, and risk of non-compliance.

These factors make one thing clear: conventional approaches to fire detection are unable to keep up with the demands of modern warehouses.

Modern Detection Technologies

Aspirating Smoke Detection (ASD)

Once considered unsuitable for dusty or industrial environments, ASDs have evolved to be ultra-sensitive and are now considered to be far more suitable for application that traditional point detection:

  • Continuously samples air through a network of pipes, providing very early smoke detection.
  • Modern systems now feature in-line blow-out filters and dust purge technology, addressing the false alarm problems that gave aspirators a poor reputation in the past.

Benefit for managers: Fewer false alarms, less maintenance, and earlier warnings – giving more time to act without disrupting daily operations.

Linear Heat Detection (LHD)

LHD offers a straightforward, yet effective solution:

  • Uses heat-sensitive cable that triggers when a set temperature is reached.
  • Ideal for racking aisles, conveyor belts, and hard-to-reach areas.

Benefit for managers: Works reliably regardless of airflow, reducing the risk of delayed detection and avoiding costly downtime.

Together, LHD and ASD complement each other, offering detection solutions that adapt to the requirements of today’s warehousing rather than forcing the environment to adapt to the technology.

Expert Insight

Patol’s Managing Director, Iain Cumner, highlights that the conversation around warehouse fire protection has shifted dramatically in recent years: “The days of exclusively relying on ceiling-mounted point detectors in warehouses are over.

With facilities now exceeding 20 metres in height, filled with dense racking, and incorporating complex automation, we need detection solutions that can ‘think differently’.

“Linear Heat Detection and Aspirating Smoke Detection are not just technologies.

“They’re enablers of safer, more resilient facilities. But the key is expertise.

“It’s about matching the right product to the right environment, and designing systems that balance compliance with practicality.”

This people-first, consultative approach is at the heart of Patol’s value proposition.

Trusted fire detection solutions are not just about products but about ensuring safety and continuity for people, businesses, and communities.

Practical advice for consultants and specifiers

When planning or upgrading fire detection in warehouses, keep these points in mind:

  1. Think in zones: Break large spaces into detection zones to quickly identify where a fire starts and limit unnecessary disruption.
  2. Match the tech to the risk: Use LHD for conveyors and racking; ASD for high-value stock or areas where early detection is essential.
  3. Plan maintenance early: Choose designs that allow servicing without major operational downtime.
  4. Work with experts: Engage with fire detection specialists early in the design stage to ensure compliance with BS 5839-1, BS EN54-22 and BS EN54-28 and alignment with insurer requirements.

What is the future of warehouse fire detection?

Automation, robotics, and AI-driven logistics will demand fire protection strategies that are adaptive and intelligent.

We will see more integration between detection and smart building management systems, enabling real-time analytics and predictive maintenance.

Hybrid systems that combine LHD, ASD, and intelligent control will become standard, providing a layered approach to protection.

At the same time, the emphasis on sustainability will grow – with detection systems designed to reduce energy use, minimise maintenance visits, and extend equipment lifespan.

Yet the core principle remains the same: protecting people.

Warehouses are workplaces as much as they are storage facilities.

Fire safety is about safeguarding employees, first responders, and the communities that rely on these essential buildings.

Fire safety in warehouses is about more than technology – it’s about confidence.

Confidence that your site is protected.

Confidence that operations won’t be disrupted by false alarms.

Confidence that your system meets both UK standards and insurer expectations.

Throughout this transition, Patol’s role is to delivers trusted fire detection solutions for challenging environments, combining technical expertise, responsive service, and a people-first approach.

With certified products, rapid dispatch, and ongoing consultancy, we help facilities managers achieve not only compliance but also the peace of mind that comes from knowing both people and assets are safe.

Case Study: Protecting Portcentric Logistics, Felixstowe

At the Port of Felixstowe, PD Portcentric Logistics operates one of the UK’s largest customs-approved warehousing facilities, storing a wide range of goods from fast-moving consumer products to ambient foodstuffs.

With three high-bay warehouses and racking exceeding 20 metres, ensuring reliable fire detection was a significant challenge.

Patol supplied 24 ASD units, installed by BBC Fire Protection (part of Marlowe plc), to provide comprehensive coverage across the site.

A mix of compact and two-channel detectors ensured every zone, from small ambient storage areas to large high-level bays was effectively protected.

By locating the ASD sampling points at accessible low levels, the system offered fast, reliable detection without disrupting operations.

The design also reduced maintenance complexity and downtime, as detectors could be serviced without specialist access equipment.

For the site’s management team, the result was clear: enhanced protection, simpler compliance, and complete peace of mind that both people and products are safeguarded around the clock.

This case demonstrates how modern detection, applied with expertise, can overcome problems that traditional systems would fail to address.

This was originally published in the November 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

Patol to showcase heat and flame detection systems at NEC Birmingham

Patol announces participation in Fire Safety Event 2025

Patol has confirmed it will exhibit a range of its fire detection technologies at the Fire Safety Event 2025, taking place from 8–10 April at the NEC Birmingham.

According to Patol, the company will present multiple systems designed for early fire detection in environments where conventional methods may be limited.

The products are intended for sectors including waste processing, industrial operations, and logistics.

Patol will exhibit on stand 4/N26.

Range of fire detection products to be demonstrated

Patol has announced it will demonstrate its Linear Heat Detection Cable (LHDC), which is intended for detecting heat in facilities such as tunnels, conveyors, and other high-risk environments.

Other systems include Infrared Transit Heat and Flame Sensors, designed to detect hot spots or embers in transported materials such as coal, biomass, or recycled waste.

The company will also display its Aspirating Smoke Detection (ASD) systems.

These are used for early detection of smoke in areas such as data centres, lift shafts, cold stores, and storage facilities.

Patol technology supports early detection across industries

Patol reports that its fire detection solutions are used across sectors including power generation, transportation, and waste management.

Its Thermal Imaging Cameras will also be presented at the event.

These devices detect abnormal temperature fluctuations to help identify potential risks before ignition occurs.

The company states that its technologies are installed in conditions that may challenge standard detection approaches.

Live demonstrations and expert engagement at the event

Patol has said it will provide live demonstrations of its detection systems at the Fire Safety Event 2025.

Visitors to the stand will be able to observe the technologies in use and discuss their application with company specialists.

Patol stated: “Attendees can see the technology live in action, with the opportunity to discuss with Patol’s team of experts how these solutions can enhance fire safety strategies across sectors – gaining valuable insights on fire safety practices and compliance.”

Patol to showcase heat and flame detection systems at NEC Birmingham: Summary

Patol has announced it will take part in the Fire Safety Event 2025 at the NEC Birmingham, from 8–10 April.

The company will present various fire detection technologies on stand 4/N26.

These include Linear Heat Detection Cables for early fire warning in tunnels and conveyors, Infrared Transit Heat and Flame Sensors for hot spot identification, and Aspirating Smoke Detection systems used in cold storage and data environments.

Thermal Imaging Cameras for heat monitoring will also be demonstrated.

Patol reports that its systems are used across sectors such as power generation, transportation, logistics, and waste management.

The company will provide live demonstrations during the event and offer discussions with fire detection specialists.

Space, safety and structural shifts: Patol addresses the fire risks in car parks

Iain Cumner, Managing Director of Patol Ltd, explores the evolving fire risks in car parks, focusing on vehicle design, construction materials and detection technologies

The fire industry is well aware that car parks present their own unique challenges in terms of effective fire safety. On 10 October 2023, that awareness filtered through to a much wider audience with the media reports on the major fire at the multi-storey car park at Luton Airport.

The headline figures helped to put into perspective the consequences: despite the efforts of 100 firefighters and 15 fire engines, who fought for 12 hours to bring the flames under control, more than 1,400 cars were written off, and the ensuing chaos disrupted the travel arrangements of some 34,000 passengers as 220 flights were cancelled.

The aftermath, while perhaps not providing sufficient fuel for front page headlines, still made for stark reading: the airport worked for months with the Motor Insurers’ Bureau (MIB) and the Association of British Insurers (ABI) to resolve claims and the car park rebuild project is not set to be complete until late 2025.

Thankfully such incidents are rare. But there is a growing concern they are likely to become more commonplace. Car parks and, importantly, the vehicles they contain, have changed significantly over the last few decades. Simply looking at the size of modern-day vehicles in comparison to their predecessors makes for interesting reading.

The Mini of 2018, for example, is over 60% larger than the launch model of 1959. The Range Rover, a much bigger car to start with, has still increased by over 40% in size compared to a 1981 model. The consequence is that the space between vehicles has been significantly reduced, this closer proximity making it easier for fires to spread from one to another and turning a minor incident into a major conflagration. The increase in the use of weight-saving plastic components in modern vehicle manufacture has also brought implications in terms of fire load.

The reference to Range Rovers takes us back to the Luton Airport incident. Despite ‘news’ circulating on the rumour factories that are Facebook and X (formerly Twitter) that an electric and/or hybrid vehicle was the source of the fire, it was subsequently proven by Bedfordshire Fire & Rescue Service to be a diesel-powered vehicle, widely reported to be a Range Rover. While the supposition that it was an electric vehicle proved to be incorrect on this occasion, this brings us onto another important consideration in car park fire safety.

‘Thermal Runaway’

Electric vehicles bring with them their own issues regarding fire risk. The lithium-ion batteries which power them can be subject to a rapid increase in temperature caused by the release of stored chemical energy in the event of a battery fire. This is referred to as ‘thermal runaway’ and can result in an explosive combustion of electrolyte vapour released from the battery. This generates intense heat, as well as highly toxic smoke and can contribute significantly to the potential for multi-vehicle fires.

The current advised approach for the fire service when faced with a fire in an electric vehicle is to allow a controlled burn. However, when the vehicle is within a confined space – a covered car park being a prime example – the fire may need to be extinguished to prevent spread. In an electric vehicle fire twice the amount of water is typically required to extinguish it compared to that for an internal combustion engine.

There is also an increased danger in terms of reignition. Add to that the growing number of electric vehicle charging points being installed in covered car parks, with the potential ignition sources they represent, and it is easy to see why concerns are being raised.

The combined issues of the increase in the adoption of electric vehicles along with the infrastructure to charge them, plus the typical size of a parking space, has been highlighted in a recent report by the ‘Office for Zero Emission Vehicles’ (OZEV) who only last year provided interim guidance. One of the recommendations is that the size of car parking spaces should be increased.

Construction contributing to the problem

It is important to appreciate that it is not only changes in vehicle design that are adding to the risk. Many modern car parks feature sloping floors to help with drainage from storey to storey. An unintended consequence is that this can also create a channel for any fuel that has escaped from vehicles to transfer through the whole structure.

Modern construction methods also focus on speed, providing cost savings as well as minimising disruption in the highly populated urban areas in which car parks tend to be located. This has seen the adoption of metal structures that are quick to erect but become malleable at high temperatures, providing the potential for instability in the event of a fire, particularly if the steel is uncoated.

Linear Heat DetectionCable

Car park fire safety was already becoming a topic of increased interest but what the Luton incident has undoubtedly done is to significantly raise the profile. Quite understandably the potential for sprinklers to become mandatory in multi-storey car parks is being discussed, with the design for the new car park at Luton incorporating a fire suppressant system. I would like to focus on the fire detection side of the equation and will leave it to those more qualified to discuss the pros and cons of extinguishing.

All those involved in the fire safety arena are only too aware that cost is inevitably a consideration in what is effectively a ‘grudge’ purchase. This is certainly true of car parks, with the muti-storey options offering a big area to protect.

This is one of the reasons why Linear Heat Detection Cable (LHDC) is increasingly being recognised as the fire detection method of choice in such applications. LHDC provides a cost effective option, with resettable (analogue) and non-resettable (digital) options available. While cost is a factor in its selection, LHDC is also ideally suited to the harsh environmental conditions that car parks typically present. Vehicle fumes, dust, damp and high humidity can all prove problematic for some forms of detection but they do not affect LHDC. It is also low maintenance and is not prone to false alarms.

Both systems are made up of a control device (optional for digital cable), the cable itself and an End of Line device. The technology is designed to provide early detection of fire conditions or overheating in circumstances where other forms of detection would not be viable due to cost and/or the inability to sustain a stable environment. A single detection zone of LHDC can cover from 1,600 to 2,000 square metres, with an alarm signal sent back from each zone to a control device which can be connected to a conventional fire alarm panel or fully integrated with an analogue addressable system.

Analogue LHDC is primarily used in car park applications.  It is a coaxial cable constructed with a copper-coated, steel central conductor, an inner insulation (dielectric), a tinned copper braid layer and an overall protective sheath. 

In a car park installation, a controller is typically employed and can be fully integrated on either a conventional fire panel or an analogue addressable system.  Monitoring a zonal length of cable for both elevated temperatures and faults, it can be configured to operate in two-wire mode that emulates the operation of conventional heat detectors.

It has the ability to trigger for hot-spot detection on small sections of the cable as well as an abnormal ambient temperature increase across the entire zone. An end of line termination box with test switches provides fault monitoring for both open and closed circuit faults, ensuring full cable integrity.

The cable is typically installed either on the car park ceiling or in a dedicated cable tray, with an air gap maintained between the ceiling or cable tray to ensure that they do not act as a heat sink towards the heat sensitive cable.

Dublin apartment blocks

A good example of how effective LHDC can be in protecting car parks from the threat of fire is a project for two blocks of apartments in Dublin. Custom Electronics, a commercial electronics provider based in Blanchardstown Dublin, offers a range of fire safety systems.  The company chose to fit Patol LHDC fire detection in both the Waterways Apartments in Rathbourne and the Oaks Apartments in Trimbleston, working on the latter project with electrical contractor Abbey Electrical.

Using specialist stainless steel clips and fixings, along with neoprene sleeves with cable ties, Patol’s LHDC was installed in parallel runs above the cars and access routes. Having the everyday appearance of simple cable means that the cable is less likely to suffer from wanton attack by vandals, a common problem for point-type detectors. For additional mechanical strength, it can be supplied in an armoured form.

Reflecting current and future risk

Car parks and the vehicles they contain have both changed significantly in their design over the years. The onus on maximising the number of vehicles a car park can accommodate is only getting stronger, with parking a perennial issue in many of the UK’s towns and cities.

This means that the space allocated per car is unlikely to increase significantly, ensuring that the potential for a fire to spread quickly remains. Nor is the focus on switching from fossil fuelled to electric fuelled cars going away, even if the date for banning the sale of new petrol and diesel cars has been pushed back to 2035. The fire threat that this poses has to be considered and somehow reflected in the fire solutions applied.

Regulations and standards are starting to develop but many, as in the case of electric vehicles, are still in preparation or under revision in most countries. The approach to safe car park design needs to consider all the contributory factors, from the building materials employed to the evolving designs of vehicles and the technologies available to protect them.

LHDC is not a panacea for car park fire safety. However, in the aftermath of the fire at Luton Airport, it can provide a significant contribution to the ongoing debate that we need to have to ensure that the risks are properly reflected in the measures taken to protect them.

This article was originally published in the January 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

Patol to showcase Linear Heat Detection Cable at the Fire Safety Event

Exhibiting at a UK trade show for the first time as part of the Sdiptech Group of companies, industrial fire detection specialist Patol will be focusing on its Firesense Linear Heat Detection Cable (LHDC) technology at the Fire Safety Event at the NEC, Birmingham from 25-27 April, 2023.

Available in digital and analogue options, Firesense is designed to provide early detection of fire and overheating where other forms of detection would not be viable. The Digital (Non-Resettable) cable, along with its associated functional units and junction boxes, is approved to EN54-28, ensuring a system is available with complete EN approval.

Completing the LHDC offering will be Patol’s Fibresense fibre optic option (available as Thermoplastic Tube or Armoured Tube) which is particularly suited to protecting critical infrastructure and hazardous environments, whether in a remote location or an inner city.

Also on show will be examples from the ASD (Aspirating Smoke Detection) range, designed to provide immediate alerts of a fire at the earliest incipient stage.

Patol will be on stand 3a/J58 at the show.

Swedish technology group Sdiptech adds Patol to its portfolio

Fire detection specialist Patol has announced that the company has been purchased by Swedish technology group, Sdiptech.

The purchase makes Patol the 12th business in the UK to be added to Sdiptech’s portfolio and it joins the group’s Special Infrastructure Solutions Business Unit.

Patol has been manufacturing and supplying fire detection solutions across a wide range of industrial sectors since it was founded in 1968. Under private ownership throughout this time, this announcement marks a significant investment from an international technology group based in Sweden that specialises in creating more sustainable, efficient and safer societies.

The acquisition also sees Sdiptech taking ownership of Patol’s sister company, Linesense, which will continue to offer Linear Heat Detection Cable (LHDC) solutions for specialist applications such as transportation, petrochemical sites and tunnels.

Commenting on the announcement, Iain Cumner, Managing Director of Patol, said: “We are delighted to become part of Sdiptech, our new long term owner. The Group’s wide ranging experience in a number of different fields will prove invaluable in continuing to develop the Patol business.

“I have already met a number of senior personnel from other companies within the Group and the opportunity to discuss areas of common ground, as well as learning from their own experiences, is providing much food for thought and ideas which we can implement and build upon to further improve our offering in fire safety products and systems.

“It is an excellent fit for us and I look forward to working with the team at Sdiptech and sister-companies as we look to build on more than 50 years of protecting people and property from the threat of fire.”

Johan Lahiri, Business Unit Manager of Special Infrastructure Solutions at Sdiptech, said: “As a business we recognise that a well-functioning infrastructure is vital to our societies and everyday lives. Effective fire protection has an integral role to play in that process, not only protecting lives but also buildings and assets.

“Patol has demonstrated its capacity to manufacture innovative systems which are in use throughout the world, as well as forming relationships with partners to extend its capabilities into areas such as Aspirating Smoke Detection (ASD) and Infrared Heat Detection.”

Patol announces Iain Cumner as new Sales Director

The next stage in the development of Patol as the leading specialist in industrial fire safety equipment and systems has been announced with the appointment of Iain Cumner as Sales Director.

52-year-old Iain joins the business with extensive experience in security, fire and BMS (building management systems). Starting out his career with an apprenticeship in electronics with Marconi, Iain moved into integrated security systems in 1989 with Card Key Systems, one of the first large scale manufacturers of access control systems in the UK. Since then he has worked for companies ranging from Caradon Trend and Control Systems International (CSI) to G4 Technology and Frontline Security.

In his roles he has been involved in sales, both end user and through the supply chain, with notable contracts which included blue chip projects for companies such as Coca-Cola, Lloyds of London, Amazon Web Services, DPD and Motorola. For Motorola, Iain was responsible for a project which saw an integrated solution rolled out through the company’s whole portfolio across18 countries.

Iain joins Patol from Johnson Controls (JCI) where he most recently worked in developing framework agreements with Tier 1 construction companies for specification of fire, security and building management systems. The focus was on integrated system solutions, with a particular emphasis on data centres and tall buildings.

The timing of the appointment is part of Patol’s commitment to succession planning, with current Sales Director Kelvin Miller retiring from the business later in the year.

Commenting on his appointment, Iain said – “I am delighted to be taking on the position at an exciting time for the company. While the Patol name is well established worldwide, with its linear heat detection cable providing reliable fire detection in many diverse applications, developments in other areas are also raising the profile of the Patol brand. I see particular growth potential in the thermal imaging technology offering from the company. Throughout my career I have seen the focus on integration increase, with intelligent solutions now developing exponentially through the opportunities afforded by the IoT (Internet of Things) to deliver significant benefits in terms of AI and analytics.”

Kelvin Miller comments – ‘We are delighted to be bringing Iain on board. I will be working closely with him over the coming months to ensure he has a good understanding of the nuts and bolts of the business to enable him to take Patol forward. Given the worldwide nature of our markets, it was important that Iain had experience of both UK and overseas projects. In addition to prestigious contracts here, he has also worked extensively in Europe and the Middle East. He will be able to build on the momentum we have gained as a business and also identify new opportunities through his particular experience with system integrators.”

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