:2025-06-03 15:11:31:
Sulfur hexafluoride (SF ₆) gas detector plays a crucial role in the power industry, mainly used for monitoring and ensuring the safety of high-voltage electrical equipment with SF ₆ as insulation and arc extinguishing medium. The following analysis is conducted from three dimensions: core functions, application scenarios, and technical value:
1. Core function: Ensure the safety of equipment and personnel
① Leak detection and localization
The density of SF gas is about 5 times that of air, and it is prone to accumulate in low-lying areas after leakage, forming a suffocating environment. The detector can monitor the sealing of equipment in real time and locate leakage points (such as GIS pipeline welds and circuit breaker flanges) through electrochemical, infrared absorption, or laser spectroscopy technology, avoiding insulation performance degradation or personnel poisoning caused by gas leakage.
② Purity and Analysis of Decomposition Products
SF ₆ may decompose into toxic by-products such as SO ₂, H ₂ S, HF, etc. under the action of electric arc, corroding equipment and reducing insulation strength. The detector can quantify the concentration of decomposition products through chromatography or electrochemical sensors, evaluate the risk of internal equipment failures (such as partial discharge and overheating), and guide maintenance decisions.
③ Micro water content monitoring
Moisture is the main threat to the insulation performance of SF ₆. When the moisture content exceeds 300ppm, it is easy to react with SF ₆ to generate corrosive substances. The detector controls the micro water content to ≤ 150ppm (IEC standard) through resistance capacitance method or electrolysis method, extending the service life of the equipment.
2. Typical application scenarios
① High voltage switchgear operation and maintenance
GIS (Gas Insulated Switchgear): Detect SF pressure, density, and leakage rate to ensure insulation strength.
Circuit breaker: Monitor the state of SF ₆ gas in the arc extinguishing chamber to prevent a decrease in breaking capacity caused by leakage.
Case: A GIS equipment in a certain substation was found to have an annual leakage rate exceeding 0.5% (standard ≤ 0.1%) through SF ₆ detector. It was promptly supplied with gas and the sealing gasket was repaired to avoid equipment shutdown.
② Electric Power Laboratory and Research and Development
Material compatibility testing: Testing the interaction between SF ₆ and sealing materials (such as epoxy resin) to evaluate long-term stability.
Fault simulation experiment: Verify the corrosion resistance of the equipment by injecting decomposition products such as SO ₂.
③ Environmental Protection and Recycling Management
Recycling process monitoring: In SF ₆ recycling and reuse, gas purity should be tested (≥ 99.9%) to avoid impurities affecting insulation performance.
Emission control: Detect the content of decomposition products in waste SF ₆ to ensure compliance with the emission reduction requirements of the Kyoto Protocol.
3. Technical Value and Industry Impact
① Reduce operation and maintenance costs
Prevent equipment damage caused by insulation failure through early leak detection.
Extend the SF gas replacement cycle and reduce gas procurement and processing costs.
② Enhance the reliability of the power grid
Real time monitoring of SF ₆ parameters can provide early warning of equipment failures 3-6 months in advance, reducing unplanned downtime by more than 40%.
Ensure the safe operation of ultra-high voltage transmission projects.
③ Compliant with environmental regulations
The greenhouse effect coefficient of SF ₆ is 23500 times that of CO ₂, and the detector helps the power industry achieve SF ₆ zero emission goals
summarize
SF gas detector is a core tool in the power industry to ensure equipment safety, improve operation and maintenance efficiency, and fulfill environmental responsibilities. With the development of ultra-high voltage power grid and smart grid, their technical requirements are upgrading from single detection to "multi parameter, intelligent, and environmentally friendly" direction, providing key support for the construction of new power systems.
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