Aviation preparedness insights to shape Intersec 2026 summit agenda

Aviation crisis leadership in focus at Intersec 2026

Intersec has confirmed that aviation crisis leadership will be a core part of the International Security Leaders’ Summit taking place from 12–14 January at the Dubai World Trade Centre.

Organisers said the programme will focus on how leaders across government, aviation and national infrastructure are adapting their decision-making, communication and coordination practices amid operational disruption.

The update follows April 2024’s record rainfall in the UAE, which the National Centre of Meteorology described as the heaviest since climate data records began in 1949.

According to Intersec, the rainfall event demonstrated the scale of planning and cross-agency cooperation required to maintain continuity in complex environments.

The summit will examine how recent events continue to influence leadership approaches across critical infrastructure.

Aviation lessons from April 2024 flooding

Intersec highlighted insights from David Warham, Head of Response and Recovery Planning at Dubai Airports, whose team managed the impacts of the rainfall event.

Warham said: “Effective crisis leadership is defined by calm decision-making, clarity of communication, and credible coordination under pressure.

“In aviation, where seconds matter and stakeholders span multiple agencies, leaders must translate uncertainty into direction.”

He noted that preparation underpins leadership decisions in high-pressure situations.

Warham added: “But effective leadership in a crisis begins long before the event itself.

“It’s built on preparedness, planning, and the discipline of regular scenario testing.

“True crisis leadership means projecting calm, inspiring trust, and making informed decisions even when information is incomplete.”

Intersec said Dubai Airports operates in a region shaped by rapid development, climate variability and multi-stakeholder operational demands.

Warham continued: “Organisations in the Middle East operate in fast-growing, multicultural environments where critical infrastructure, government agencies and private operators must work in harmony.

“Building resilience here requires more than plans.

“It demands alignment, consistent joint training, and strong communication channels that transcend organisational boundaries.”

He stated that this model is reflected in the airport’s oneDXB community.

Warham said: “It ensures that when disruption occurs, we respond as one team with clarity, trust and collective strength.”

Aviation risk, regulation and collaboration in the 2026 programme

Intersec said Warham will join a panel titled Crisis Leadership Through Lived Experience at the International Security Leaders’ Summit.

The panel will also include Amira G AlMutairi from the Ministry of Communications and Information Technology, Peter O’Connell from AtkinsRéalis and Navaid Ahsan from Etihad Airways.

The session will be moderated by Glenn C Schoen, described by Intersec as an international security specialist and author.

Organisers said the panel is expected to address the General Civil Aviation Authority’s Civil Aviation Regulation on Airport Crisis Management.

According to Intersec, the regulation outlines expectations for how airports prepare for, respond to and recover from operational disruption, and is aligned with international practices.

Intersec added that the regulation builds on the Executive Council Resolution No. 30 of 2024 concerning the Dubai Supreme Committee of Crisis and Disaster Management.

PwC will also host a closed-door roundtable on multi-sector crisis management, with a white paper to follow.

Intersec said the summit will sit alongside other conference platforms including the Fire and Rescue Conference, the Health and Safety Conference, the Access Control Theatre, the Control Room Innovation Theatre, the InCyber Briefing and the SIRA Forum.

Organisers confirmed the event is held under the patronage of His Highness Sheikh Mansoor Bin Mohammed bin Rashid Al Maktoum with support from the General Command of Dubai Civil Defense and the Security Industry Regulatory Agency.

Dishan Isaac, Show Director of Intersec at Messe Frankfurt Middle East, said: “The Security Leaders’ Summit brings together diverse voices from across government, aviation and critical infrastructure to share lived experience and actionable insights.

“It reinforces Intersec’s commitment to advancing resilience, collaboration and security leadership across the region.”

Practical implications for high-risk infrastructure management

Aviation leaders, airport crisis managers and emergency planners may find this development relevant because the summit will examine operational experiences from April 2024’s rainfall event in the UAE.

Teams responsible for decision-making during complex disruptions could draw practical insight from the leadership approaches described by Dubai Airports, particularly around planning, multi-agency coordination and communication practices.

Organisations operating in transport hubs may also have interest in the General Civil Aviation Authority’s Civil Aviation Regulation on Airport Crisis Management, which will be discussed by panel participants and shapes expectations for crisis preparation and recovery.

Professionals working in control rooms, access management, fire and rescue operations and safety planning may benefit from the wider Intersec 2026 programme, which includes conference tracks focused on operational readiness in interconnected safety environments.

Air Tractor reports increase in aircraft demand and production plans for 2025

Rising demand for Air Tractor aircraft

Air Tractor has reported an increase in demand for its turboprop aircraft, particularly in international markets, according to the General Aviation Manufacturing Association (GAMA).

The company produced 210 aircraft in 2024 and plans to increase production to 215 units in 2025.

Air Tractor president Jim Hirsch said: “We are proud of our contributions to efficiency, productivity, and safety in both our agricultural market and the firefighting sector.

“Our team remains committed to meeting the growing global demand while maintaining the high standards that define Air Tractor.”

2024 aircraft production and market position

GAMA’s 2024 Aircraft Shipment and Billing Report lists Air Tractor as a leading manufacturer in its agricultural, aerial firefighting, and utility aircraft sectors.

The report highlights the company’s continued production growth and market presence.

Since its founding, Air Tractor has focused on producing purpose-built aircraft designed for aerial application, firefighting, and other specialised operations.

The company marked its 50th anniversary in 2024.

Partnership with Pratt & Whitney Canada

A key factor in Air Tractor’s aircraft development is its long-term partnership with Pratt & Whitney Canada (P&WC), the manufacturer of the PT6 turboprop engines used in Air Tractor aircraft.

Hirsch said: “The strong relationship between Air Tractor and Pratt & Whitney Canada has been instrumental in delivering high-quality aircraft to our customers for 50 years now.

“This partnership has played a significant role in making Air Tractor the industry leader it is today and ensures that every aircraft we produce is equipped with a dependable turboprop engine our customers can rely on.”

Future production outlook

Air Tractor’s production increase in 2025 reflects continued demand across its key markets.

The company plans to maintain its focus on reliability and efficiency as it expands manufacturing.

Hirsch stated that Air Tractor remains committed to supporting global demand while ensuring its aircraft meet industry standards.

Air Tractor reports increase in aircraft demand and production plans for 2025: Summary

Air Tractor has reported an increase in demand for its turboprop aircraft, with plans to produce 215 units in 2025, up from 210 in 2024.

The company’s market position in agricultural, aerial firefighting, and utility aircraft was highlighted in the General Aviation Manufacturing Association’s 2024 Aircraft Shipment and Billing Report.

Air Tractor’s partnership with Pratt & Whitney Canada continues to play a role in its aircraft production, with the PT6 turboprop engine being used in its fleet.

The company recently marked its 50th anniversary and has stated its commitment to meeting global demand while maintaining production standards.

EcoOnline ongoing partnership enhances Menzies Aviation’s safety

EcoOnline’s EHS system supports safer airport operations

EcoOnline is celebrating its partnership with Menzies Aviation, in place since 2019, for its enhancement of the company’s MORSE system.

This system focuses on safety and compliance across Menzies’ global network, which operates at over 295 airports in 65 countries.

Malcolm Rae, Head of Risk Systems & Data at Menzies, said: “We influence safety from the moment passengers walk into an airport to when they leave.”

EcoOnline said that the partnership has driven data-driven solutions for risk management, compliance tracking, and incident reporting.

Improved safety outcomes through data-driven tools

EcoOnline’s EHS platform, integrated with Menzies’ MORSE system, enables employees to identify and address risks in real time.

Menzies Aviation has reported a 128% increase in hazard reporting since implementing the platform.

Serious personal injury rates have also declined, from 1.8 incidents per 1,000 full-time employees in 2019 to 0.7 in 2023.

Graham Cowing, Vice President of Safety Standards at Menzies, said: “EcoOnline’s platform equips everyone with the tools to report hazards and ensure our people go home safely.”

Leadership commitment to safety

Safety is prioritised at all organisational levels at Menzies, as the company noted that its executives begin every board meeting with a “Take 10 for Safety” discussion.

Real-time dashboards from EcoOnline inform these discussions and keep safety central to decision-making.

Cowing said: “Safety is a core value that starts with leadership. Every executive member is committed to getting involved.” These efforts have reinforced accountability across the organisation.

MORSE Week reinforces global safety commitment

Menzies hosts bi-annual MORSE Week events to promote its safety culture.

The most recent event, held from 28 October to 1 November 2024, focused on emergency response planning.

Employees engaged in tools, support, and team-building opportunities to enhance their commitment to safety.

Tom Goodmanson, CEO of EcoOnline, said: “By prioritising safety and collaboration, Menzies Aviation—together with EcoOnline—is setting new benchmarks for industry standards.”

EcoOnline partnership enhances Menzies Aviation’s safety: Summary

Since partnering with EcoOnline in 2019, Menzies Aviation has achieved notable safety improvements through its MORSE system.

Hazard reporting increased by 128%, and serious personal injury rates decreased significantly.

EcoOnline’s EHS platform empowers employees to identify risks, supporting safety culture across Menzies’ 295 airport locations.

Leadership commitment, including safety-focused board meetings, reinforces these efforts.

MORSE Week events further promote safety through learning and team building.

The partnership reflects Menzies’ ongoing commitment to improving safety standards for employees and customers worldwide.

CFA launches world-first mixed reality fire aviation simulator in Victoria

Groundbreaking aviation simulator launched at VEMTC

The Country Fire Authority (CFA) has introduced a world-first mixed reality fire aviation simulator designed to enhance the training of aviation personnel in Victoria.

The new simulator, which features advanced mixed reality goggles offering a 280-degree view of the landscape, provides a safe environment for pilots and aviation staff to hone their skills.

Launched on 9 October 2024 at the Victorian Emergency Management Training Centre (VEMTC) in Bangholme, the simulator was presented by Emergency Services Minister Jaclyn Symes alongside CFA Chief Officer Jason Heffernan and FFMVic Deputy Chief Fire Officer Fiona Dunstan.

The $640,000 project was co-funded by the CFA and the Department of Energy, Environment and Climate Action (DEECA).

Origins of the simulator project

The concept of the aviation simulator began with a prototype trailer, developed by CFA Aviation Commander John Katakouzinos AFSM during the COVID-19 lockdown in 2020.

The prototype, initially built in Katakouzinos’ garage, continues to be used by aviation members across Victoria.

Katakouzinos said the need for a permanent simulator became clear after the success of the initial version.

He explained: “The simulator allows aviation volunteers and staff to undertake mapping, air attack missions, direct aircraft, and practise communication and radio skills in a simulated environment.”

Enhancing fire aviation training across Victoria

The simulator’s design includes photorealistic mapping software and communication technology, which replicates the interior of an aircraft.

This enables pilots and students to experience a realistic flight environment.

The simulator can be programmed to train users in various scenarios, using any aircraft deployed for aerial firefighting in Australia.

It can also re-enact previous operations for pre-season training, making it a versatile tool for aviation personnel.

More than 300 Air Attack Supervisors, Air Observers, and Airborne Mission Commanders have already been trained or reaccredited using both the prototype and the new permanent simulator.

Expanding beyond Victoria

CFA Chief Officer Jason Heffernan praised the efforts of those involved in developing this innovative tool.

He said: “The new aviation simulator at Bangholme as well as the existing simulator trailer are vital assets for aviation training across Victoria.”

Heffernan also highlighted the increasing interest from other agencies, with a portable version of the simulator trailer currently being built for NSW Parks and Wildlife.

The aviation simulator is expected to enhance collaboration between different organisations, offering essential training for firefighting efforts across Australia.

CFA introduces innovative mixed reality simulator for fire aviation training: Summary

The Country Fire Authority (CFA) has launched a mixed reality fire aviation simulator aimed at improving the training of aviation personnel.

The project, costing $640,000, was jointly funded by CFA and the Department of Energy, Environment and Climate Action (DEECA).

Originally conceived by CFA Aviation Commander John Katakouzinos during the COVID-19 lockdown, the simulator has become a key tool in training more than 300 personnel in Victoria.

The system replicates real flight conditions using photorealistic mapping and is adaptable for any aircraft used in aerial firefighting.

The portable prototype trailer is still in use, with further interest shown by other Australian agencies.

Advancements in fire fighting at airports

Key developments in international fire fighting at airports

The CTIF Commission “Rescue and Fire Fighting at Airports” convened for their annual meeting from 22nd to 24th May 2023 in Balsthal, Switzerland.

The meeting, chaired by Manfred Sommerer, brought together international experts to discuss critical developments in airport fire safety and rescue operations.

Addressing challenges in fire safety and regulation

The commission discussed various issues, including the implementation of Task and Resource Analysis (TRA) across different airports, the transition to Fluorine-free extinguishing foam, and the complexities of meeting response times, particularly when firefighters also hold other airport roles.

A notable point of discussion was the contrast between national regulations and European Union Aviation Safety Agency (EASA) standards.

EASA updates and new directives

EASA provided insights into recent regulatory changes, highlighting the option for certain aerodromes to assess their adequacy in providing Rescue and Fire Fighting Services (RFFS) using a risk-based approach.

This flexibility allows for reduced RFF categories during periods of non-commercial or specialised operations.

EASA also announced the formation of a group of RFF experts to clarify and unify the interpretation of certain requirements across countries.

Reflecting on the Lima Airport tragedy

The meeting also reflected on the tragic incident at Lima Airport on 18 November 2022, where two airport firefighters lost their lives during a response time test.

While the official investigation report is pending, the commission discussed potential contributing factors and the importance of daily briefings and safety procedures.

Transitioning to fluorine-free firefighting foam

A significant focus was on the ongoing transition to fluorine-free firefighting foam, necessitated by the environmental and health impacts of perfluoroalkylated substances (PFAS).

The challenges of this transition, including technical adjustments to fire vehicles and changes in firefighter training, were discussed, along with the need for sharing experiences among commission participants.

Engaging with industry leaders

The meeting also featured presentations from associated members, including companies like WinTecCon and Rosenbauer.

Discussions centered around fire simulators’ role in training programs, balancing cost benefits with the need for real-life firefighting vehicle experience.

Planning for the future

The next face-to-face meeting is scheduled for 2024 in Norway, with details to be confirmed later.

IFSJ Comment

The 2023 CTIF Commission discussions highlighted the dynamic nature of the field, balancing technological advancements with practical challenges.

The Lima Airport tragedy served as a stark reminder of the risks involved in firefighting operations, underscoring the need for constant vigilance and improvement in safety protocols.

The transition to fluorine-free foam is a significant step towards environmental sustainability, reflecting the sector’s commitment to responsible practices.

This meeting not only addressed immediate concerns but also laid the groundwork for future developments, ensuring safer and more efficient airport operations globally.

Mid-Air Fire Protection and the Internet of Things

Dr Omar Kaddouha, Director Flight Safety and Chief of Accident Investigation at the Lebanese Ministry of Public Works and Transport looks at the Internet of Things in aircraft firefighting

An inflight fire is probably the most hazardous situation that flight crew can face. Once fire in the cabin or other locations of the aircraft gain momentum, even forceful intervention by the flight crew may not prevent a catastrophic loss of that aircraft and within a very short time, it becomes unlikely that the crew are able to extinguish it.

Historically, and in the absence of statistical records of fire in the air, incidents were investigated and mitigated after their occurrence and the civil aviation regulators defined new requirements to prevent these fires from happening. Aircraft and equipment manufacturers developed designs to be implemented at the aircraft production level and, for immediate regulatory compliance requirements, supplied retrofits for older aircraft models.

Most fire prevention designs rely on advance heat and smoke detection sensors to alert other inbuilt systems and crew on the event. Advance technology, however, can take the detection system process further to enable remote fire isolation and control and the Internet of Things (IoT) may become one of them.

Design principles

Aviation safety focuses on fire risk prevention in flight. To prevent fire from occurring, separating the three responsible elements for creating a fire – fuel, the ignition source and oxygen – becomes a major design principle.

In the initial design stages, and while assessing the risk of fire, it is essential to consider passive and active design features that contribute to the reduction of fire risk. During the initial design stages it is necessary to consider the use of fire retardant material such as non-combustible or self-extinguishing materials.

Throughout the detail design stages, passive features such as means of separating of the fire enabling elements by routing, compartmentalisation, isolation, ventilation, drainage, bonding and grounding are detailed. Active design features are necessary to isolate and control fire, particularly in engines, cargo compartments and the landing gear bay. Active design features include fire and overheat detection systems, fire-suppression systems, temperature sensing, air shut-off means and automatic shutdown of non-flight critical systems.

Fire threat types

First there are engine fires. An engine fire is detected and contained by the aircraft fire detection and suppression systems. Fire from an explosive breakup of the turbine may not be contained by the suppression system and it may spread to the wing and/or fuselage. When an engine fire has been successfully contained the risk that the fire may reignite remains and the crew must land the aircraft as soon as possible to allow ground and fire crews to carry out a visual examination of the engine.

Second, there are cabin fires. A fire within the cabin can be detected and contained by the crew using on-board firefighting equipment. Fire in the cabin also necessitates landing the aircraft as soon as possible because of smoke and the potential reigniting of the fire. Ground and fire crews must carry out a detailed examination of the cause of the fire and the resulting damage.

Finally, a hidden fire could start in inaccessible areas of the cabin causing a hot spot on a wall or floor potentially triggered by unusual electrical malfunctions causing smoke or fumes in the cabin. Some hidden fires may be detected by onboard fire detection systems or by the crew or passengers noticing smoke or fumes.

Hidden fire is the most dangerous type of fire for two reasons: they are difficult to locate and access for extinguishing, the time spent for locating hidden fires may allow the fire to take hold and do considerable damage to the aircraft; and a hidden fire may be difficult to confirm, delaying the crew from initiating an emergency landing. The consequence of such a delay may be that the fire becomes non-survivable before the aircraft has an opportunity to land.

Flame detection and suppression systems

Aircraft fire protection systems allow the flight crew to detect fire in its preliminary stages, using different sensors depending on the location where the chances of fire are highly probable.

An engine fire detection and suppression system is a dual loop sensing mechanism comprising two sensing elements called Loop A and Loop B. When a fire is detected, a signal is sent to an onboard fire detection control unit that alerts the crew to activate the two fire extinguishers assigned to each engine, by using fire switches in the cockpit.

Another form of automatic sensing devices is the ionisation type smoke detectors installed in lavatories which activate automatic fire extinguishers once it has detected around 77° C. Inside the cargo compartments, photoelectric type smoke detectors are installed to detect any smoke in its early stage. Fire extinguishers are located inside the cargo compartment, cockpit and cabin and can be used by the flight crew to extinguish the fire.

Airport firefighting systems respond primarily to an aircraft crash and the resulting fire eruption caused by that crash, aircraft Rescue and Firefighting require a great deal of information to make informed tactical decisions during aircraft incidents. Preplanning for such incidents saves precious time in the deployment of firefighting assets and personnel.

Aircraft rescue

The outlook is for improving the survival rate of an aircraft accident which necessitates a widespread review of all existing and potentially in-design options that can be made available to regulators and the industry. New design features will, in some cases, involve incorporating new features to the aircraft at the design stage where costs can be more easily absorbed. Retrofits on the other hand may become costly and their implementation delayed.

Implementing an effective cabin safety enhancement measure should consider several different factors that are to be ranked in importance, as potential safety measures: the expected number of lives to be saved; implementation cost of each measure whether a measure can be implemented as a retrofit to existing fleets or is only applicable to new aircraft; and implementation effectiveness.

These factors include: increased aircraft size, increased hydraulic pressures, increased use of advanced composite materials, increased passenger loads, increased fuel loads, unique uses or configuration of space, multi-deck configuration, sill height for accessing upper decks, and crew rest areas in multiple locations, lower level and overhead.

IoT applications across the aerospace industry

In line with the existing flame detection and suppression systems, IoT has become extremely beneficial to aircraft operations as it can push the boundary further and allow for instant and remote knowledge of the behaviour of aircraft systems while in operation. IoT can intelligently detect an anomaly in associated hardware, software, or systems and transmit remotely to engineers, operation control centres, manufacturers or firefighting departments such early alerts which can prevent accidents and potential fires from happening.

IoT in aerospace represents an enormous revenue potential. The aviation industry is already on the trail with the use of inbuilt systems such as ACARS for data reporting and for linking sensors to cockpit instruments to present crew information and alerts. With IoT, the aviation industry is getting ready to maximise benefits from existing systems and ultimately, enhancing aircraft and engine’s safety and reliability.

Nevada Division of Forestry invests in air support for wildland firefighting

The Nevada Division of Forestry (NDF) has announced a partnership with Rutledge Airborne Applications to provide critical air support for wildland firefighting throughout Nevada. The three-year partnership contract increases fire response capabilities by utilising state-of-the-art single engine air tankers (SEATs).  

SEATs are compact, versatile aircraft that can launch from smaller regional and local airports, such as those in Minden and Elko. They are capable of flying multiple missions within an hour, depending on proximity to a refill base. The aircrafts can also cover a greater range and fly at higher speeds than NDF’s current helicopter fleet.

Because of their smaller size, SEATs can safely manoeuvre in areas that are difficult to access. “We can go virtually anywhere, and we’ll work out from whatever base is closest to the fire to keep us efficient.” – said Cade Boeger, a pilot for Rutledge.

With fire seasons growing longer and more extreme each year, with the new partnership Nevada is reimagining their approach to fire preparedness to meet today’s challenges, including climate change impacts.

“This new partnership with Rutledge gives us more flexibility and efficiency in our response to wildfires. Our priority is to protect firefighters and first responders, Nevada families, communities, and natural ecosystems,” said Nevada’s State Forester Firewarden Kacey KC.

The first two SEATs arrived in Reno on Sunday night and are ready to assist firefighters on the ground anywhere in the state.

Ziegler to field test Z6 Hybrid at Frankfurt Airport

International supplier of vehicles for firefighting, civil protection and the police, ZIEGLER, is set to put its new aircraft firefighting vehicle Z6 Hybrid through its paces with a prototype field test of the vehicle at Frankfurt Airport FRAPORT from 2023.

ZIEGLER has more than 50 years of experience in the production of aircraft firefighting and rescue vehicles and has since now delivered more than 300 Z-Class of different types to national and international airports. Most recently, ZIEGLER introduced the new Z-Class in 2020 as part of the Innovation Rollout.

The new Z6 Hybrid can be driven in three different ways: Exclusively with electric motor, conventionally
with combustion engine (diesel) or with Hybrid Drive Technology. In the latter, the electric motor and
combustion engine work hand in hand in an intelligent network, meaning the Z6 Hybrid is usually powered purely electrically at airports. Depending on the driving profile, a corresponding range even allows over 80% of the journeys to be made electrically.

For situations where every second counts, the Z6 Hybrid’s electric motor and combustion engine accelerate the 39 ton vehicle, to its top speed with values are on a par with an 8×8 chassis with diesel drive.

If the battery is empty and has has to be charged, the full drive power of the diesel engine of a conventional Z6 is available. In contrast to the market, ZIEGLER does not follow the downsizing trend here and thus ensures full and long-lasting reliability for the operation and so if the power of the electric motor is unavailable, all normative requirements are still met.

ZIEGLER has solved the challenge of developing the world’s best alternative drive concept for aircraft firefighting and rescue vehicles. It combines aspects of sustainability, is faster than any comparable product and ensures the usual reliable operation. Thanks to its modularity, the hybrid concept can also be extended to other types of the Z-Class.

The Frankfurt Airport field test will among other things involve testing the operational suitability of the electric drive train and the recording of a wide range of measurement data to optimize the operating concept.