谐振腔在线测量汽轮机排汽湿度温度敏感性分析
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1.国网河北能源技术服务有限公司 石家庄 050000;2.华北电力大学电站能量传递转化与系统教育部重点实验室 保定 071000

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TM931

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国网河北能源技术服务有限公司科技项目(TSS2020-08)


Error analysis of vapor humidity measured by resonant cavity affected by temperature
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1.State Grid Hebei Energy Technology Service Co., Ltd., Shijiazhuang, 050000, China; 2. .Key Laboratory of Power Station Energy Transfer Conversion and System, North China Electric Power University, Baoding, 071000, China

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    摘要:

    蒸汽湿度在线测量对凝汽式汽轮机安全运行有着重要影响。为了准确计算出谐振腔受温度影响的实验误差,进行了谐振腔温度特性理论分析及实验研究。基于国内外研究现状,根据已有的Maxwell方程对排汽湿度进行测量。根据实验腔体在温度变化中的尺寸变化以及对不同温度下测得蒸汽湿度数据的分析,得出温度对谐振腔测量蒸汽湿度的影响程度。在不考虑温度影响的时候,通过微波谐振腔测得实验空气湿度为43%,而影响因素修正后与采用光学法测得的结果在13%左右。根据更改优化谐振腔安装方式可以大幅降低测量误差,研究结果对提高蒸汽湿度在线测量精度具有重要意义。

    Abstract:

    The on-line measurement of steam humidity has an important effect on the safe operation of condensing steam turbine. In order to accurately calculate the experimental error of the resonant cavity affected by temperature, the theoretical analysis and experimental study of the resonant cavity temperature characteristics were carried out. Based on the research status at home and abroad, exhaust steam humidity is measured according to Maxwell equation. According to the size change of the cavity in the temperature change and the analysis of the vapor humidity data measured at different temperatures, the influence degree of temperature on the vapor humidity measured by the resonant cavity is obtained. According to the data, the conversion is about 43% steam humidity, and the normal steam turbine exhaust steam humidity is not more than 13%. The measurement error can be greatly reduced by changing the resonant cavity installation mode. The research results are of great significance to improve the on-line measurement accuracy of steam humidity.

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李路江,杨海生,唐广通,闫晓沛,李振宇,韩旭.谐振腔在线测量汽轮机排汽湿度温度敏感性分析[J].电子测量技术,2021,44(13):1-5

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  • 在线发布日期: 2024-09-05
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