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Study Finds Flyability Drones Help Reduce Greenhouse Gas Emissions
In a recent study, the independent consulting firm Boiler Room Consulting (BRC) explored the potential to cut greenhouse gas (GHG) emissions—specifically carbon dioxide (CO2)—by increasing boiler inspections with the help of Flyability’s collision-tolerant inspection drones. The results were impressive and highlighted the environmental benefits of this innovative approach.
BRC discovered that by increasing the frequency of boiler inspections using Flyability drones, it could reduce CO2 emissions by as much as 649 metric tons per year. This significant reduction showcases how modern technology can play a crucial role in sustainability efforts.
To understand how this works, let's dive deeper into the process.
Boiler inspections are typically conducted once a year. However, this limited frequency means that issues may go unnoticed for extended periods. While these problems might not immediately affect the boiler’s lifespan, they can still lead to leaks and other harmful emissions that impact the environment.
By conducting more frequent inspections, companies can identify and address these issues earlier, preventing costly repairs and reducing emissions. Additionally, regular inspections improve maintenance efficiency, helping to extend the life of expensive equipment like boilers and pressure vessels.
But why don’t companies inspect more frequently? The answer lies in cost. Traditional inspections require scaffolding, which is both time-consuming and expensive. Building and dismantling scaffolding can cost thousands or even tens of thousands of dollars, and the downtime involved can result in lost profits.
This is where Flyability drones come in. Using a drone instead of a human inspector significantly reduces costs, sometimes by up to 90%. These drones are designed to navigate tight spaces and avoid collisions, making them ideal for boiler inspections.
Flyability’s Elios and Elios 2 models are specifically built for confined environments. Their protective cages allow them to safely fly through complex internal structures without crashing, ensuring accurate and reliable data collection.
BRC conducted an experiment focusing on the combustion head, a critical component of the boiler. They found that a damaged combustion head can increase CO2 emissions by up to 649 metric tons annually, depending on the fuel type used. This highlights the importance of early detection and regular maintenance.
The study also confirmed that increased inspections can prevent such failures, leading to lower emissions and improved operational efficiency. From a financial standpoint, more efficient boilers mean lower operating costs and longer asset life.
Beyond environmental and economic benefits, using drones for inspections enhances safety by keeping personnel out of hazardous areas. It’s a win-win solution that supports both sustainability goals and business performance.
If you're interested in learning more about the full findings, you can download the complete BRC report. The insights from this study underscore the value of integrating advanced technology like Flyability drones into routine maintenance practices.