李超, 石俊锋, 杨云飞, 常程, 姬忠礼. 燃气轮机进气系统空气滤芯的抗湿性能分析[J]. 油气储运, 2021, 40(9): 1056-1062. DOI: 10.6047/j.issn.1000-8241.2021.09.011
引用本文: 李超, 石俊锋, 杨云飞, 常程, 姬忠礼. 燃气轮机进气系统空气滤芯的抗湿性能分析[J]. 油气储运, 2021, 40(9): 1056-1062. DOI: 10.6047/j.issn.1000-8241.2021.09.011
LI Chao, SHI Junfeng, YANG Yunfei, CHANG Cheng, JI Zhongli. Analysis on moisture resistance of air filter element in gas turbine inlet system[J]. Oil & Gas Storage and Transportation, 2021, 40(9): 1056-1062. DOI: 10.6047/j.issn.1000-8241.2021.09.011
Citation: LI Chao, SHI Junfeng, YANG Yunfei, CHANG Cheng, JI Zhongli. Analysis on moisture resistance of air filter element in gas turbine inlet system[J]. Oil & Gas Storage and Transportation, 2021, 40(9): 1056-1062. DOI: 10.6047/j.issn.1000-8241.2021.09.011

燃气轮机进气系统空气滤芯的抗湿性能分析

Analysis on moisture resistance of air filter element in gas turbine inlet system

  • 摘要: 高效空气滤芯是防止燃气轮机中通流部分产生磨损、腐蚀以及颗粒沉积的关键部件,而在高湿环境中滤芯性能显著降低,严重影响燃气轮机安全运行。选取4种F9级滤材制成的滤芯过滤性能进行测试,对比不同状态下滤材抗拉强度,测试滤芯在不同液滴质量浓度下的压降和效率变化。结果表明:滤材抗湿性能主要取决于滤材纤维成分,合成纤维成分可有效降低滤材吸水率,由低吸水率滤材制成的滤芯在水雾影响下维持原有性能的能力更强。研究结果可为燃气轮机进气过滤系统运行维护以及高效抗湿性滤芯的研制提供技术借鉴与参考。

     

    Abstract: Efficient air filter element is a key component to prevent erosion, corrosion and solids precipitation in the flow path of gas turbine. However, the performance of the air filter element is significantly reduced in high humidity environment, which seriously affects the safe operation of gas turbine. Herein, the filtration performance of four types of filter element made of F9 filter materials was tested. By comparing the tensile strength of the filter materials under different conditions, the change of pressure drop and efficiency of the filter element was measured in the conditions with different droplet mass concentration. The results show that the moisture resistance of the filter material mainly depends on the fiber composition. The synthetic fiber can effectively reduce the water absorption rate of the filter materials, and the filter element made of materials with low water absorption rate has a stronger capability to maintain its original performance with the influence of water spray. The research results could provide technical reference for the operation and maintenance of gas turbine inlet filtration system and the development of efficient moisture-resistant filter elements.

     

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