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Why are pneumatic valves rather than electric valves commonly used for important valves in power plants?

2025-01-20View Original

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Reasons why pneumatic valves are preferred over electric valves for important valves in power plants: 1. Safety considerations – Pneumatic valves possess intrinsic safety features. In a complex working environment such as a power plant, there are numerous electrical devices and potential sources of electrical interference. Electric valves are driven by electricity, and in the event of electrical faults such as short circuits, leakage currents, overloads, or electromagnetic interference, their control systems are likely to malfunction. For example, in areas near strong electromagnetic radiation, electric valves may receive incorrect signals, causing them to open or close accidentally, which poses serious safety risks to the operation of the entire power plant system. Pneumatic valves use compressed air as their driving force and do not rely on electrical signals; as a result, they are highly resistant to electromagnetic interference and can operate stably and reliably in complex electrical environments, ensuring system safety. Furthermore, in areas where flammable and explosive gases may be present, such as near the gas delivery pipelines in gas power plants, the use of electric valves can pose an explosion risk due to factors like electrical sparks; whereas pneumatic valves do not generate electrical sparks during operation, making them safer for use in such hazardous areas. 2. Reliability comparison: Pneumatic valves have a relatively simple structure, mainly consisting of components such as cylinders, pistons, and valve bodies. This simple mechanical structure results in a relatively low probability of failure. In contrast, electric valves contain complex components such as motors, reducers, and control circuits. For example, motors may suffer from overheating and damage due to prolonged operation, and the electronic components in the control circuit may also fail as a result of aging, moisture exposure, and other factors. Pneumatic valves can operate stably as long as the compressed air supply is stable and the main components such as cylinders and pistons are in good condition. In terms of maintenance, pneumatic valves are relatively easy to maintain, and technicians can more easily understand and address any issues that arise. Generally, the valve’s normal function can be restored through simple actions such as checking the air supply pressure and replacing seals. Fault diagnosis and repair of electric doors require professional electrical knowledge and complex tools. 3. Response speed: Pneumatic valves can open and close quickly. In case of emergencies in power plants, such as pipe leaks or overpressure, valves need to be able to respond quickly to shut off the flow of fluid. The operating speed of pneumatic valves can be adjusted quickly by methods such as regulating the air supply pressure, and they can typically complete their operation within a few seconds or even less. The operating speed of electric valves is limited by factors such as the motor speed and the reduction gear ratio, resulting in a relatively slow response. For example, in situations where it is necessary to urgently shut off steam pipes, pneumatic valves can prevent steam leakage more quickly, thereby reducing the losses caused by accidents. 4. Cost factors: From a cost perspective, pneumatic valves have advantages in terms of initial investment and operating costs. Pneumatic valves are generally cheaper than electric valves of the same specifications, as they have a simpler structure without complex motor and control circuit components. In terms of operating costs, although compressed air is required, the compressed air system can serve multiple pneumatic devices; as a result of cost sharing, the operating cost per pneumatic valve is relatively low. Furthermore, in terms of energy efficiency, pneumatic valves also have certain advantages over electric valves in some cases; their energy consumption mainly comes from the use of compressed air. 5. Environmental adaptability: In terms of environmental adaptability, pneumatic valves perform excellently. The working environment in power plants can be harsh, including high temperatures, humidity, and dust. The main working components of pneumatic valves are metal and seals, and they have good tolerance to changes in temperature and humidity. The electronic components in electric doors are prone to failure due to high temperatures and humid environments; for example, in high-temperature conditions, the performance of these electronic components may decline, leading to malfunction in valve control. Thanks to its many advantages such as high overall safety, strong reliability, fast response time, low cost, and good environmental adaptability, pneumatic valves are more commonly used for important valves in power plants rather than electric valves.
Reply #22025-01-21
I have a question: don’t pneumatic valves also require solenoid valves to open and close the compressed air? They can’t be operated manually, right?

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