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作 者:李彦霖 秦本科[1] 薄涵亮[1] Li Yanlin;Qin Benke;Bo Hanliang(Institute of Nuclear and New Energy Technology,Tsinghua University,Beijing,100084,China)
机构地区:[1]清华大学核能与新能源技术研究院,北京100084
出 处:《核动力工程》2024年第6期139-146,共8页Nuclear Power Engineering
基 金:先进反应堆工程与安全教育部重点实验室开放基金(ARES-2024-04);中核集团领创科研项目(CNNC-LCKY-202202)。
摘 要:控制棒棒位传感器是控制棒水压驱动系统的六大核心部件之一,其为核反应堆提供了唯一真实的棒位指示。接地测量型电容式棒位传感器具有测量精度高和抗干扰能力强的特点,可实现对控制棒棒位的一步一测。为澄清该型棒位传感器的电容敏感机理,本文基于保角变换法,建立了传感器的灵敏度分析模型,利用数值模拟方法和传感器的静态标定实验结果进行了模型修正和模型评价。结果表明,该灵敏度分析模型能够准确分析接地测量型电容式棒位传感器的静态测量特性,理论解和实验结果的相对误差为3.4%,该模型可用于传感器的结构分析和优化设计。Control rod position sensor is one of the six core components of the control rod hydraulic drive system,which provides the only true rod position indication for nuclear reactors.The grounding measurement capacitance rod position sensor has the advantages of high precision and strong anti-interference ability.Control rod positions can be measured step-by-step by this kind of sensors.In order to clarify the capacitive sensitive mechanism of this kind of capacitance rod position sensors,the sensitivity analysis model of the sensor is established by conformal mapping.Model modification and model validation are conducted by the numerical simulation and results of the static calibration experiments.The results show that the static measurement characteristics of the grounding measurement capacitance rod position sensor can be accurately analyzed by the sensitivity analysis model.The relative error between the results obtained by the sensitive analysis model and experiments is 3.4%.The sensitivity analysis model can be used for structural analysis and optimal design of the sensor.
分 类 号:TL375.5[核科学技术—核技术及应用]
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