Greek authorities investigate wildfires as arsonist suspected

Wildfires in Greece under investigation

Greek authorities are investigating the possibility that the wildfires threatening Athens were started by a single arsonist.

Civil protection minister Vassilis Kikilias stated that officials found evidence suggesting the fire near Athens was caused by arson, combined with extreme weather conditions.

A fire service spokesman noted the challenges faced by the force, stating: “Almost every 10 minutes a new fire breaks out.”

In Koropi, a storage facility and at least one home were destroyed, with the flames spreading to a boat dry dock and across fields of dry grass and olive trees.

Authorities have evacuated two nearby villages as a precaution.

The heatwave has also led to several foreign tourists dying or going missing while hiking.

Among them, 59-year-old American tourist Albert Calibet has been missing since last Tuesday on the island of Amorgos.

At least five tourists have been found dead on the Greek Islands in recent weeks.

Fire protection technical reports deadline

Today marks the deadline for the submission of fire protection technical reports by property owners near or within forested areas in Greece.

After submitting the technical and risk reports prepared by relevant scientists, property owners must complete necessary interventions by the end of June.

These include pruning trees, shrubs, and removing combustible materials, followed by submitting a Fire Protection Regulation compliance report.

Government sources indicate that no extension of the deadline is currently planned.

The priority is for citizens living close to or within forested areas to take necessary actions to prepare for potential fires.

Scientists are expected to inform property owners about the risks and recommend measures based on their financial capabilities.

The aim is to protect lives and property while easing the fire brigade’s efforts.

Implementation of fire protection measures

This year’s Fire Protection Regulation declarations will also serve as a practical exercise for relevant agencies to identify gaps, shortcomings, and omissions in the process.

The declarations, submitted manually or by email by scientific engineers, surveyors, foresters, or agronomists, will help in planning future interventions.

The application of measures for compliance has been suspended for this year, with mandatory measures focusing on the first line of protection from fire.

These include clearing branches and trees adjacent to buildings, dry grass, bushes, rubbish, and other combustible materials outdoors.

Property owners have until June 30 to complete these tasks and submit their declarations on the online platform.

Scottish Fire and Rescue Service warns of resource drain from deliberate fires

SFRS records high number of deliberate fires

The Scottish Fire and Rescue Service (SFRS) has warned of a potential drain on resources if deliberate fire incidents reach last year’s levels.

Between June and August 2023, SFRS recorded approximately 3,900 deliberate fires.

Of these, more than 3,200 were classified as secondary fires, which include incidents involving derelict buildings, unoccupied buildings, grassland, and refuse.

The statistics noted 87 deliberate fires in derelict buildings and 54 in unoccupied buildings.

Additionally, there were 1,428 deliberate fires affecting grassland and 1,399 deliberate refuse fires.

SFRS launches Safer Summer 2024 campaign

As part of its efforts to combat anti-social behaviour and deliberate fires, SFRS has launched the Safer Summer 2024 campaign.

The campaign is designed to address the risks posed by deliberate fires and to reduce their occurrence during the summer months.

Assistant Chief Officer David Lockhart, SFRS Director of Prevention, Protection and Preparedness, highlighted the strain these fires place on resources: “Firefighters across Scotland were called to over 40 deliberate fires daily last summer which is a needless drain in our resources.”

He added: “Most of these fires were secondary fires, involving derelict buildings, unoccupied buildings, grassland, and refuse.

In terms of derelict buildings in particular, these structures have the potential to cause great risk to members of the public so please do not think of entering them for any reason.”

Collaboration with partners to reduce fire incidents

SFRS is collaborating with partners, including Police Scotland and Fearless, a youth service of Crimestoppers, to identify those responsible for deliberate fires.

Lyndsay McDade, Fearless Scotland Manager at Crimestoppers, urged everyone to contribute to reducing fire risks.

She said: “Deliberate fires are often started with no understanding of how quickly they can get out of hand and cause not only significant damage but serious injury and risk to life.

Fearless works closely with partner agencies, including SFRS, to reduce anti-social behaviour and deliberate fire setting.”

McDade also encouraged anonymous reporting of those responsible for starting fires: “If you know who is responsible for starting unsafe fires in your community you can speak up to our charity 100% anonymously at Fearless.org.

“We can’t track your IP address or any contact details.”

Raising awareness among young people

SFRS is urging parents, carers, and teachers to ensure children and young people are aware of the risks and consequences of deliberate fire setting.

The Service emphasises the importance of community involvement in preventing these incidents and ensuring the safety of the public.

The collaboration with Crimestoppers and Police Scotland aims to create a safer environment by addressing and mitigating the causes of deliberate fires.

Wildfires in Greece and Türkiye force evacuations and prompt investigation

Large wildfire near Athens contained

Scores of Greek firefighters and water-bombing aircraft succeeded late Wednesday in taming a large wildfire on the outskirts of Athens.

The blaze forced authorities to evacuate two nearby settlements.

As reported by AP News, the wildfire broke out in low scrub and olive trees near Vari, approximately 30 kilometres south of central Athens.

The Greek fire service reported that the fire was largely contained, but firefighters would remain on alert to prevent any resurgence.

Local authorities indicated that windy, hot, and dry weather exacerbated the wildfire.

Fire service spokesman Vassilis Vathrakogiannis stated: “Winds at times reached gale force,” complicating efforts to control the fire.

The local mayor, Dimitris Kioussis, told state-run ERT television: “The situation is being brought under control. I hope that in the next two hours everything will be over.”

Investigation into arson

Authorities suspect that the wildfire near Athens was deliberately started.

Vassilis Kikilias, the minister for climate crisis and civil protection, stated: “Investigators are in possession of visual material that clearly shows an arsonist starting the fire in dry undergrowth.” A can of petrol was also found nearby.

The greater Athens area has been declared at high risk of fire on Thursday.

Vathrakogiannis mentioned that Wednesday was “a very difficult day” due to the weather conditions, with new fires breaking out almost every ten minutes.

Fortunately, most were dealt with immediately.

No injuries were reported from the Athens fire.

However, ERT showed a burnt-out home and destroyed plastic boats in a yacht and speedboat parking area.

It is too early to confirm reports of damage to businesses and homes.

Wildfires in other parts of Greece and Türkiye

In addition to the fire near Athens, firefighters and aircraft were battling other major fires in the southern Peloponnese region, central Greece, and on the eastern Aegean Sea island of Lesbos.

These fires also forced the evacuation of a village.

In Türkiye, officials reported that they had brought two wildfires under control in the historic Gallipoli peninsula and Eceabat in the northwestern Canakkale province.

The Eceabat blaze reportedly started when a fire set to burn agricultural waste accidentally spread into a forest.

Two villages in Gallipoli were evacuated as a precaution, and many historic monuments were temporarily closed to visitors.

Regularly hit by searing summer temperatures, Greece has experienced numerous wildfires in recent days.

Several people have been arrested and charged with accidentally starting the blazes.

Scientists warn that human-induced fossil fuel emissions are worsening the length, frequency, and intensity of heatwaves across the world, leading to longer wildfire seasons.

Greece mandates risk assessment reports for properties near forests

Property owners in Greece must submit risk assessment reports by June 21

As reported by THEMA, property owners in Greece with land near forests must submit a risk assessment report by June 21.

The deadline for land clearing is June 30.

Amidst these looming deadlines, some owners are panicking and hiring bulldozers to remove all vegetation, fearing fines.

Government sources, however, emphasize preparation over fines, especially for those at high risk of forest fires.

The cost of drafting the report, which remains valid for subsequent periods, starts at €150 for a residence and varies based on the property’s size and characteristics identified by the technical scientist.

Industry experts explain that the average price for most properties ranges between €400-500, with costs reaching or exceeding €5,000 for special cases like industrial properties.

Government guidelines and measures

Government sources told THEMA that technical scientists must identify risks and suggest indicative measures.

They stated: “The law is flexible. The goal is to have a technical report that identifies the risks, explains where a fire might come from, where the occupants should escape, and how the house can be saved.

“Citizens should have this study to stay informed, do the necessary pruning, and take additional measures suggested by the scientist later.”

Government representatives also highlighted the importance of moderation and logic in preparing for forest fires.

They emphasized that the Fire Department would defend houses, so making them defensible is crucial to saving both homes and forests.

Compliance declarations and preventive actions

This year, property owners must submit compliance declarations and take necessary actions recommended by technical scientists.

These include defining danger zones, issuing building assessment reports, and determining preventive fire protection measures such as access routes, buffer zones, material storage, regular cleaning, and evacuation plans.

Municipalities will accept declarations and conduct random checks to minimize social impact, prioritizing high-risk areas like institutions housing the elderly or children.

They have received €30 million for fire protection of settlements in forest lands, requiring only the technical report this year.

Permits and fines

Permits are needed only for construction-related works not exempt from building permits or small-scale construction approvals.

No permits are required for preventive measures like clearing vegetation and cutting tree branches.

However, small-scale construction approvals are needed for protection zones in certain areas.

Fines for not submitting the risk assessment and technical report range from €0.10 to €0.40 per sq.m. based on risk level, with a minimum fine of €250.

After a two-month compliance period, fines are adjusted based on actions taken.

Jordanian firefighting helicopters bolster Cyprus’ wildfire readiness

Reinforcing wildfire firefighting capabilities

As reported by Philenews, Cyprus has enhanced its firefighting resources with the arrival of two Jordanian firefighting helicopters and an 18-member crew.

This strategic deployment aims to strengthen the island’s firefighting capabilities in preparation for the upcoming fire season.

The helicopters and crew, which arrived in Paphos a week ago, have completed extensive preparation and familiarisation exercises.

Fully briefed on the local terrain, they are now ready to support firefighting operations across Cyprus.

Aerial firefighting fleet augmentation

The Jordanian mission is part of an effort to augment the Republic of Cyprus’ aerial firefighting fleet.

This temporary reinforcement will remain until additional aircraft, to be leased by Cyprus, become available.

Maria Panayiotou, Minister of Agriculture, Natural Resources, and Environment, stated: “The cooperation includes provisions for at least one aircraft from each service to be on standby 24/7, with an impressive response time of approximately 30 minutes.”

Ground forces and additional support

In addition to the aerial assets, Cyprus has strengthened its ground firefighting forces.

The Forestry Department has been fully operational since April 1, marking an earlier readiness compared to previous years.

The Fire Service, Civil Defence, District Administrations, and the Game and Fauna Service are also on high alert.

Cyprus is actively engaging with neighbouring and other nations to secure further firefighting assets if necessary.

This collaborative effort ensures a comprehensive approach to fire prevention and suppression across the island.

IFSJ comment

The deployment of Jordanian firefighting helicopters to Cyprus is a proactive measure aimed at enhancing the island’s wildfire management capabilities.

By integrating aerial assets and reinforcing ground forces, Cyprus is taking significant steps to mitigate the risk of wildfires during the critical fire season.

The immediate readiness of the Jordanian helicopters and crew underscores the importance of international cooperation in emergency response.

This initiative not only provides additional resources but also facilitates the sharing of expertise and best practices between nations.

The commitment of Cyprus to maintain at least one aircraft on standby 24/7 with a swift response time of 30 minutes highlights the emphasis on rapid intervention.

The early operational readiness of the Forestry Department and the heightened alert status of various services further demonstrate a robust, coordinated effort to protect the island from wildfires.

Exploring Dryad Networks’ digital forest that is changing the face of early wildfire detection

Dryad Networks, led by CEO and co-founder Carsten Brinkschulte, is using advanced sensor technology and IoT to pioneer early wildfire detection

The inspiration for Dryad Networks came to Carsten Brinkschulte CEO and co-founder in 2019 during a particularly intense period of wildfires which received widespread coverage in the news.

After selling a previous company, he found himself at a crossroads, and so decided to utilise his background in telecommunications and technology to address this global issue

Wildfires contribute to up to 20% of global CO2 emissions, equal to the emissions from all vehicular traffic annually.

By mitigating wildfires, Brinkschulte says Dryad’s aim is to substantially reduce carbon emissions, but we can also safeguard biodiversity and minimise financial losses, which range from £180 billion to £900 billion annually.

Silvanet

Silvanet is Dryad’s complete solution for early wildfire detection, along with forest management, growth and health and monitoring.

Derived from the Latin word for ‘forest network,’ it represents Dryad’s foundational technology.

“We are essentially constructing a network within forests to host various applications, the primary one being wildfire detection,” Brinkschulte explains.

“This network utilises sensors capable of detecting the earliest stages of a fire and then communicates the exact location of the fire via geo-coordinates to firefighters.”

The backbone of this system is a large-scale low power, wide area network, which operates similarly to Wi-Fi but is designed for expansive outdoor environments.

It has the enhanced capability to establish a mesh network using robotics, allowing for the creation of extensive IoT networks within forested areas.

These devices are solar-powered and mounted on trees, creating a communications bubble approximately one to two kilometres in radius around each gateway.

“Within this network, we deploy sensors that are specifically designed to detect the presence of a fire by sensing the gases emitted,” he elaborates.

“This integration of advanced sensor technology with IoT infrastructure significantly enhances our ability to detect forest fires swiftly and accurately.”

IoT

Traditional forest fire detection methods predominantly rely on human observation, either by individuals spotting fires from nearby locations and alerting emergency services, or by personnel using binoculars in lookout towers to watch for smoke.

There are also technical methods such as cameras that replicate this visual scanning for smoke plumes above the tree canopy, and satellites that can detect fires from space.

Silvanet represents a new approach by employing gas sensors embedded directly in the forest.

“The sensors detect the specific gases produced by organic combustion, offering an advantage in early fire detection,” says Brinkschulte.

“Traditional satellite technology, while providing an excellent overview for tracking and predicting fire paths, is less effective for detecting small fires due to its high altitude or infrequent passes.

“Cameras, although useful over large areas, cannot detect fires that are concealed under the tree canopy and are less effective at night.”

Dryad’s gas sensors, on the other hand, are positioned close to potential ignition points on the forest floor—such as near paths, campsites, and along power lines—where human activity might spark fires.

“This proximity allows them to detect nascent fires long before they grow large enough to be visible to cameras or satellites,” he explains.

“This early detection capability is crucial for enabling quick response, which is vital for controlling fires while they are still manageable.”

Reliable data

Ensuring the accuracy and reliability of fire detection via IoT sensors, particularly when using gas sensors, presents challenges, primarily due to the complexity of distinguishing genuine fire signatures from other similar signals.

To tackle this issue, Dryad has employed machine learning technology directly within the sensors: “The AI is designed to determine whether the detected gases are indeed indicative of a fire or merely other common but unrelated elements, such as exhaust from a passing diesel truck,” says Brinkschulte.

This use of AI at the sensor level, also known as edge computing, is crucial for Dryad’s system.

“Since our network operates on a narrowband technology, it cannot support the transmission of large volumes of data,” he clarifies.

“By processing data locally within the sensors, we can maintain high accuracy and significantly reduce the likelihood of false positives.

“This method ensures that our fire detection system is both reliable and effective in real-world conditions.”

Proximity

The effective range of one of Dryad’s sensors for detecting a fire is approximately 100 metres in radius, roughly the size of a football field.

This range, says Brinkschulte, allows for early detection, which is crucial in preventing the escalation of fires.

The ability of a sensor to detect a fire within this range depends on several environmental factors such as the volume of combustible material, wind speed and direction, and temperature.

“While our sensors can detect fires beyond this range, the fire would need to grow larger and emit more gases to be detectable at greater distances,” says Brinkschulte.

“That is why our focus is primarily on early detection within high-risk and high-value areas, particularly in the wildland-urban interface, where accurate and early detection is most critical.”

This is achieved this with low-cost, easy-to-install sensors that are designed for longevity and do not require batteries, reducing the risk of introducing potential ignition sources into the forest.

The sensors are compact, about the size of the palm of a hand.

The installation process involves simply drilling a small hole into a tree trunk and securing the sensor with a wooden nail – a method designed to minimise impact on the tree and allow the sensor to remain securely in place for up to ten years.

“We use solar power and supercapacitors for energy,” he tells, explaining that the design philosophy ensures that even though each sensor covers a limited area, they are deployed strategically to maximise coverage and resolution.

Environmental focus

Brinkschulte takes the environmental impact of deploying IoT devices in natural habitats very seriously.

“Our sensors and gateways are designed to be as non-invasive as possible, crucially excluding batteries to eliminate the risk of fire hazards,” he stresses.

“Instead, we utilise supercapacitors and solar panels to power these devices, which negates the introduction of potentially hazardous materials into the forest.”

The primary goal of the detection devices is to mitigate wildfires, particularly those that are human-induced and occur at the wildland-urban interface where property and infrastructure are most at risk.

“By focusing on early detection and prevention, we aim to reduce both the environmental and economic impacts of wildfires,” says Brinkschulte.

Looking ahead

Dryad’s vision is to expand the capabilities of IoT in environmental monitoring well beyond the focus on fire detection.

Future applications include the development of fuel moisture sensors, which will help us assess and manage fire risks by measuring ground moisture.

Additionally, the company has plans to monitor other crucial ecological metrics, such as tree growth, soil moisture levels, and even the water flow within tree stems.

These advancements will utilise the existing Silvanet network infrastructure, essentially turning it into a ‘nervous system’ for the forest, broadening its impact on global sustainability.

Brinkschulte shares Dryad’s most ambitious goal, what has calls their ‘moonshot: To develop an autonomous system for extinguishing fires.

“This project hinges on securing the necessary funding, but if successful, we plan to spend the next three years creating an autonomous drone that can actively extinguish fires detected by our network,” he reveals.

“This innovation could significantly enhance our ability to respond to and manage forest fires, marking a significant milestone in the integration of IoT technology with environmental preservation and sustainability efforts.”

This article was originally published in the May 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.

Pioneering progress in wildfire control with Hydro Firebreak

Oswaldo Acosta, Project Manager and creator of Hydro Firebreak talks about the company’s plans to tackle the wildfire crisis

Can you tell us about your role at Hydro Firebreak and your involvement in developing this fire containment solution?

As the Project Manager and creator of the fire containment system at Hydro Firebreak, my primary focus has been on developing a solution that significantly impacts the way we approach wildfire protection.

Recognising the acute need for an effective fire defence mechanism globally, we were driven by the mission to save lives and safeguard properties against the devastating effects of forest fires.

My involvement has spanned from the initial concept design to overseeing the project’s execution, ensuring that our innovative system meets the high standards required for combating wildfires.

Our patented modular network of high-capacity nebulisers and sensors is a proof of our commitment to innovation and environmental preservation.

It’s designed to create a mist barrier that lowers the ambient temperature and halts the advance of fires, making it adaptable to various terrains and automatically activated in areas most vulnerable to wildfires.

As the designer, I’ve had the privilege of steering this project towards reality, working closely with a dedicated team to bring about a change in how we protect our forests and communities.

The system’s originality lies in its ability to offer extensive protection with minimal environmental impact, a feature that sets us apart in the market today.

Holding the patent for this utility model in Spain was a milestone in our journey, strengthening our position as pioneers in fire protection technology.

As we continue to refine and expand our system, my role encompasses strategic planning and coordination, ensuring we remain at the forefront of innovation and efficacy in forest fire prevention and control.

What stage are you at with the project?

At the current stage of the project, we’re focusing on the feasibility studies and calculations necessary for development.

We haven’t progressed to a physical prototype yet; instead, we’re utilising two pieces of software to aid our design process.

The first software, named Water Cat, and the second, Sap2000, are instrumental for our work.

They allow us to perform the hydraulic and structural calculations needed to ensure the viability and integrity of our system.

This approach is crucial for us to refine our designs and prepare for the next stages of creating a tangible prototype.

How does the modular design of the system enhance its effectiveness in different types of terrain?

The modular design of our system is crucial for its adaptability and effectiveness across various terrains.

At the outset of any project, we conduct thorough soil or area studies to tailor our design precisely to the specific needs of the terrain.

This adaptability is a cornerstone of our approach, ensuring that the system can be customised for each unique environment.

Moreover, our system is geometrically uniform, allowing us to create diverse shapes and configurations.

This flexibility means we can install the system in a way that best protects the area in question, regardless of its geographical challenges.

Through this design philosophy, we ensure that our system can offer optimal protection across a wide range of terrains, making it a versatile solution in the fight against forest fires.

Can you explain how the Automated Activation works and its importance in wildfire management?

The Automated Activation feature is a pivotal aspect of our system, operating on temperature sensors that detect heat levels indicative of a fire.

Upon detection, these sensors send a signal to the control centre, triggering the system to activate automatically.

This automation makes our system entirely self-sufficient and autonomous, designed to operate independently of the areas it’s protecting.

The system’s modularity enhances its adaptability.

Modules can be interconnected to extend coverage across larger areas as needed.

Naturally, expanding the system to cover more ground will require more water and a larger tank, but these adjustments are scalable based on the size and requirements of the protected area.

This malleability and automatic activation are crucial for immediate response in wildfire management, ensuring rapid deployment without human intervention, which is essential for the welfare and protection of both natural and residential areas prone to wildfires.

What are the key technological innovations in your system that set it apart from traditional fire containment methods?

The innovations at the heart of our system revolve around our unique approach to water distribution and monitoring.

I’ve designed specific couplings or key pieces that enable us to construct a hydraulic network using firefighting hose lines.

This innovation allows us to significantly reduce the costs associated with system implementation.

Our temperature sensors, which can operate via Wi-Fi or wired connections, are fundamental to our system’s operation.

These sensors transmit signals that initiate the system’s response to fire.

Additionally, we’ve integrated the capability to install thermal cameras.

These cameras play a crucial role in identifying the type and location of a fire, ensuring that the system can activate at a safe distance to effectively prevent and combat wildfires before they can spread.

The essence of our system is its preventative nature, aiming not just to fight fires, but to stop them before they can cause significant damage.

How does Hydro Firebreak ensure environmental sustainability while controlling wildfires?

In designing our system, environmental sustainability has been a key consideration.

Our system operates primarily with water, which inherently aligns with eco-friendly practices.

However, it also has the capability to work with foam or a dual application of both, depending on the specific requirements of the fire it’s combating.

For installation, we ensure that the area is completely clear to minimise environmental disruption.

Since water is the main element used to extinguish fires, our system is naturally compatible with ecosystem conservation efforts.

Any foam used is designed to be biodegradable, ensuring it doesn’t leave harmful residues or impact the environment negatively.

We’re committed to avoiding any substances that could be detrimental to the environment.

This approach underscores our commitment to fighting wildfires effectively but also to preserving the integrity of the ecosystems we operate within.

Our system is a testament to the possibility of combining effective wildfire management with stringent environmental sustainability standards.

What developments can we expect to see in wildfire containment technology from Hydro Firebreak?

As we look to the future of wildfire containment, it’s clear that the advancement of technology plays a critical role in the evolution of our system.

With each passing day, new technologies emerge, and at Hydro Firebreak, we feel a strong sense of duty and responsibility to incorporate these advancements to enhance our system’s capabilities.

Our main goal is to achieve even earlier detection of wildfires, which would be a significant leap forward in preventing ecological damage.

Incorporating cutting-edge technologies such as artificial intelligence (AI) and machine learning will be key to this endeavour.

By improving our system’s ability to detect fires at the earliest possible stage, we aim to offer a more rapid and effective response.

This early detection capability is crucial for minimising the impact of wildfires on the ecosystem and for providing a more sustainable and resilient approach to wildfire management.

We believe that our system will revolutionise the approach to combating wildfires by enabling early detection and intervention, which is at the core of our mission.

The versatility of our system allows it to protect a wide range of environments – from residential areas and airports to crops and other agricultural lands.

This adaptability is crucial for effectively safeguarding against the threat of wildfires.

Our system stands out for its environmental friendliness as well, and with a lifespan of 20 years upon installation, it represents a long-term investment in safety and environmental protection.

Though it requires maintenance, the benefits far outweigh the costs, particularly as the system becomes increasingly automated over time.

This ongoing automation ensures that our wildfire containment technology remains at the cutting edge, providing unmatched protection and peace of mind for various sectors affected by the threat of wildfires.

This article was originally published in the May 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.

EU strengthens wildfire preparedness for summer 2024

EU enhances firefighting efforts for the 2024 wildfire season

The European Union has announced a series of measures to enhance firefighting capabilities ahead of the 2024 wildfire season, as reported by the Directorate-General for Communication.

The EU has mobilised 556 firefighters from 12 countries to be strategically positioned in high-risk areas such as France, Greece, Portugal, and Spain.

These firefighters will support local brigades when wildfires exceed national response capacities.

Additionally, a dedicated rescEU fleet of 28 airplanes and four helicopters will be stationed across 10 member states to further bolster firefighting efforts.

The initiative aims to ensure rapid response and effective management of wildfires throughout the summer.

Increased funding for firefighting resources

The EU has allocated €600 million to enhance firefighting resources.

This funding will be used to acquire 12 new firefighting aircraft and several helicopters, which will be distributed among six EU member states in the coming years.

The investment reflects the EU’s commitment to improving wildfire response capabilities.

The new resources are expected to significantly augment existing firefighting efforts and provide a robust response to large-scale wildfires.

The strategic positioning of these resources is intended to minimise response times and maximise effectiveness in controlling wildfires.

Addressing climate change and wildfire threats

Wildfire prevention, preparedness, and response are critical in saving lives, protecting livelihoods, and preserving the environment.

The increasing frequency and intensity of wildfires due to climate change highlight the importance of being well-prepared.

The EU’s proactive measures aim to mitigate the impact of these natural disasters and enhance the resilience of affected communities.

As the effects of climate change become more pronounced, the EU’s comprehensive approach to wildfire management is crucial.

The collaboration between member states and the investment in advanced firefighting technologies underscore the importance of a coordinated and robust response to wildfires.

Commitment to environmental protection

The EU’s initiatives reflect a strong commitment to environmental protection and community safety.

By enhancing firefighting capabilities and investing in new technologies, the EU aims to protect its citizens and natural landscapes from the devastating effects of wildfires.

These measures are part of a broader strategy to address the challenges posed by climate change and to ensure a sustainable and resilient future for all member states.

The EU’s efforts in wildfire management are a testament to its dedication to safeguarding the environment and supporting affected communities.

IFSJ comment

The European Union’s proactive stance on wildfire preparedness for the 2024 season demonstrates a significant commitment to community safety and environmental protection.

By strategically positioning 556 firefighters and deploying a dedicated fleet of firefighting aircraft, the EU aims to enhance its response capabilities and mitigate the devastating impacts of wildfires.

The allocation of €600 million for additional firefighting resources further underscores the importance of being well-prepared in the face of increasing wildfire threats due to climate change.

This comprehensive approach, involving prevention, preparedness, and response, highlights the EU’s dedication to protecting lives, livelihoods, and natural landscapes.

The collaboration between member states and the investment in advanced technologies are critical in ensuring a rapid and effective response to wildfires.

As climate change continues to exacerbate the frequency and intensity of these natural disasters, the EU’s measures provide a robust framework for managing and mitigating wildfire risks.

Hawaii braces for challenging fire season with new strategies post-Lahaina disaster

Fire safety preparations escalate in Hawaii in response to previous tragedies

As Hawaii approaches a critical wildfire season, the first since the catastrophic fires on August 8 in Lahaina, the state’s fire and emergency personnel are integrating lessons learned to enhance their preparedness.

According to state officials and forecasters, this year poses a high risk for fires, prompting a comprehensive strategy to mitigate potential dangers.

On islands such as Oahu and Kauai, there will be an increased deployment of fire engines, tankers, and firefighters at the earliest indication of wildfires.

State transportation officials have committed $9 million to clear nearly 500 acres in fire-prone areas to establish fire breaks, enhancing the state’s ability to control fires before they spread significantly.

Advanced protocols and community engagement

In a proactive measure, Kauai’s emergency personnel will activate their emergency operations center upon a red flag warning, a shift from previous protocols where actions were delayed until fires were visible.

Moreover, Hawaiian Electric Co. and Kauai Island Utility Cooperative are implementing early shutdown protocols for parts of the grid during high-risk conditions to prevent fire ignitions.

Elizabeth Pickett, Co-Director of the nonprofit Hawaii Wildfire Management Organization, emphasised the broader commitment to addressing wildfire risks, stating: “I don’t think in my entire career I thought that we would have this elevated commitment across the board.”

Community’s role in fire safety

Hawaii’s strategy also involves significant community engagement.

Sheldon Hao, Honolulu Fire Department Chief, highlighted the importance of community involvement: “What we learned on Maui is educating the community about what they can do.

“You cannot just look at government. We’re asking the community to help themselves.”

This sentiment is echoed by Kazuo Todd, Hawaii Fire Department Chief on the Big Island, who advocates for a deeper community involvement in fire-related policies, emphasizing the need for proactive engagement rather than reactive measures.

Persistent challenges and future directions

Despite these efforts, challenges remain, such as the critical need for more extensive fire breaks in areas with dense, dry vegetation.

Additionally, there’s an ongoing effort to recruit and motivate community members to join these preventive initiatives, a task that remains daunting yet essential for long-term safety.

IFSJ Comment

As Hawaii enters a new wildfire season, the state is taking commendable steps to learn from past incidents and strengthen its firefighting capabilities and community resilience.

These measures are not just about immediate responses but also about building a sustainable strategy to manage and mitigate the risks associated with wildfires.

The focus on both technological advancements and community involvement is vital in fostering a prepared and informed public, ready to face the challenges of wildfire seasons.

This integrated approach is essential for the safety and sustainability of Hawaii’s unique island environments.

Wildfire detection: Optimising hazard awareness with real-time data from Indji Systems

Importance of accurate wildfire data

Accurate wildfire information is increasingly crucial as wildfires become more frequent, posing significant risks to both residential areas and remote industrial locations.

The data provided by NASA’s Fire Information for Resource Management System (FIRMS) is particularly valuable to Indji Watch customers globally, aiding in the timely awareness of natural hazards.

This information is vital for utility companies and renewable energy providers who manage infrastructure like transmission lines and solar arrays in secluded areas.

In an article for Earth Data, Mark Carinello, the product manager for Indji Systems, highlighted the critical role of this data: “Having [wildfire] hotspot data available to any company in North America or anywhere in the world is hugely important,” Carinello said: “Without it, we and our customers would have much less awareness of where fires are right now and how they might impact their work.”

Technology and satellite data in fire detection

Indji Systems integrates satellite data into its Indji Watch system to offer real-time monitoring and alerts.

This system is essential for managing the risks associated with natural hazards like wildfires and lightning strikes.

Carinello explained the direct benefits of this approach: “If you have staff up on a wind turbine 100 meters above the ground in the open countryside of west Texas, you don’t want to be out there when there’s lightning.

“If you’re working in a canyon for a utility in California and there’s a wildfire 10 miles away, it might take you a while to get out of that area.”

The FIRMS platform provides critical near-real-time (NRT) and ultra-real-time (URT) data, which are instrumental in detecting and tracking wildfires.

This data includes satellite imagery, active fire, and hotspot information that helps users pinpoint the location, extent, and intensity of wildfire activity.

Enhanced fire detection capabilities

The integration of FIRMS data has proven indispensable for Indji Systems.

“Fire can a be a tough natural hazard to detect and getting the best information is a continuous challenge,” Carinello noted.

He further detailed the advantages of satellite data in fire detection, particularly in remote locations where traditional reporting may be unreliable.

FIRMS’ data, derived from instruments like the Moderate Resolution Imaging Spectroradiometer (MODIS) and the Visible Infrared Imaging Radiometer Suite (VIIRS), offers timely updates that are crucial for the safety of remote operations.

IFSJ comment

The use of advanced satellite data for fire detection and management by Indji Systems exemplifies the importance of technological integration in enhancing hazard awareness and infrastructure safety in the energy sector.

This proactive approach ensures the safety of personnel and minimizes the risk to critical infrastructure, showcasing a commitment to operational continuity and environmental responsibility.