Skip to main content

What Is Aerial Thermography and How Does It Work?

What Is Aerial Thermography and How Does It Work?

All objects with a temperature above absolute zero give off infrared radiation, and the intensity of the radiation released increases as the temperature of the object rises. A thermal imaging camera is designed to detect this radiation intensity and render the different temperatures recorded into artificial colours so that the human viewer can ‘see’ these temperature differences and values.
Visible light forms only a small part of the electromagnetic spectrum, and the only part we can see. When pointed at an object or area, the sensor on a thermal camera allows the viewer to see the hidden infrared spectrum, which exists at wavelengths between visible light and microwaves.

Ordinary digital cameras, like the human eye, detect visible light as it bounces around on and off surfaces/objects. This visible light is then focused through a lens system onto a surface that translates the light rays/beams into electrical signals and ultimately to form an image. Unlike normal digital cameras, thermographic cameras detect radiation emitted from a surface as heat, not visible light. Heat (infrared or thermal energy) and light are both parts of the electromagnetic spectrum, but a camera that can detect visible light won’t see thermal energy, and vice versa. Thermal cameras capture infrared energy and use the data to create the images we use in thermography.

Thermographic applications for aerial infrared cameras?
After being initially created for military use during the Korean War, thermal imaging cameras have evolved into an important tool in a wide range of sectors. Firefighters use aerial thermal imaging to see through smoke, detect fire hotspots, and perform search and rescue operations in the field. Police agencies employ the technology for various purposes, including surveillance, crime scene investigation, and tracking and apprehending criminals (aerial thermal imaging was used to arrest one of the Boston Marathon bombing suspects who was hiding beneath a tarp on a boat at the time of the attack).

In the commercial aerial UAV world, we can use this technology in several unique ways.

* Wastewater Management - Water pollution locations are identified using airborne thermal imaging, which is used by municipalities to detect potential pollution sources. When it comes to monitoring irrigation on large-acreage farms, this technology is quite effective.

* National Infrastructure - Power line maintenance workers use aerial thermography to detect overheating joints and parts to avert possible power outages. It is also used by building technicians to locate heat leaks that reduce the effectiveness of cooling and heating systems.

* Roof Inspections - Water ingress through a failing flat roof can be detected easily as the penetrating water heats up during the day from the effects of solar irradiation and as water keeps its heat more efficiently than the roofs surrounding substructure, shows clearly when seen via a infrared camera.

* Solar Photovoltaic Panels - Solar Panels installed on the roofs of domestic housing as well as vast areas of farming land now repurposed as Solar Farms require regular inspection and survey to determine cell, array and panel defects. Inspecting from the sky by using a drone equipped with a thermal camera makes the job quick, efficient, cost effective and accurate.

* Landfill Underground Fire Detection - Inspecting temperature differences over large landfill regions is easier from the sky using UAV drones equipment with thermal imaging cameras. Underground fire is a real and serious risk in older waste landfill sites and require constant management to determine temperature rises

DJI Zenmuse XT
With the DJI Zenmuse XT radiometric, thermal photography from the air has never been more easy, accessible or convenient. The Zenmuse XTr is ideal for quick and dependable airborne thermal imaging missions because it combines DJI’s unrivalled experience in gimbal technology and picture transmission with FLIR’s market-leading thermal imaging technology. It records images fast and precisely across large areas, at radiometric level which affords later manipulation, analysis and detailed reporting.

Why work with Drone Media Imaging for your Thermal Inspection needs?
Drone Media Imaging’s are level 2 thermographers who specialise in aerial thermal deployment. We have extensive experience in all areas of thermographic inspection, roofs, solar panels, and fire detection and management. We deploy using the latest technology and equipment, quickly and easily throughout the UK, taking care of your requirements from mission planning, legal read tape through to data analysis and reporting.

Call To Find Out More
It is not unusual for organisations to have their own set of requirements. Please get in touch and speak with us to discuss your specific requirements, receive further technical information, or find out more about our services.

#aerialthermography #Dronethermography #Thermography #uavthermography


What Is Aerial Thermography and How Does It Work?


https://www.dronemediaimaging.co.uk/what-is-aerial-thermography-and-how-does-it-work/

Comments

Popular posts from this blog

Product Photography Opus Genie Wipes

​ https://www.visualchaosstudios.co.uk/product-photography-opus-genie-wipes/

Introduction to Building Thermography: Detecting Non-Visible Defects

Understanding Building Thermography: An Introduction to Detecting Non-Visible Defects Building thermography is a powerful tool used in the field of construction and maintenance to identify non-visible defects in structures. It involves the use of thermal imaging cameras to capture and analyse the heat patterns emitted by buildings. By detecting variations in temperature, building thermography can reveal hidden issues that are not visible to the naked eye. This technology has revolutionised the way we inspect and maintain buildings, allowing for early detection of problems and preventing costly repairs. The Science Behind Building Thermography: How it Helps Identify Non-Visible Defects Building thermography is based on the principle that all objects emit infrared radiation, which is invisible to the human eye. Thermal imaging cameras detect this radiation and convert it into a visible image, where different colors represent different temperatures. By analysing these images, qualified th...

Thermal Bridging in Commercial Buildings

Unveiling the Hidden Costs: Thermal Bridging in Commercial Buildings In the intricate world of commercial building design and construction, one often-overlooked factor plays a crucial role in energy efficiency – thermal bridging. This phenomenon, where heat easily transfers through the fabric of a building, not only impacts the comfort of its occupants but also significantly increases operational costs. The effects of thermal bridging on heat loss and its financial implications for commercial buildings, can be assessed by the itilisation of sophisticated technique of thermal imaging used to identify and mitigate this issue. Understanding Thermal Bridging: Thermal bridging occurs when a conductive material provides a pathway for heat to bypass the insulation, creating a direct route for heat to escape or enter a building. In commercial buildings, common thermal bridges include structural elements like steel or concrete connections, as well as poorly insulated junctions between walls a...