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Response Analysis on Electrical Pulses under Severe Nuclear Accident Temperature Conditions Using an Abnormal Signal Simulation Analysis Module

机译:使用异常信号模拟分析模块对严重核事故温度条件下电脉冲的响应分析

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摘要

Unlike design basis accidents, some inherent uncertainties of the reliability of instrumentations are expected while subjected to harsh environments (e.g., high temperature and pressure, high humidity, and high radioactivity) occurring in severe nuclear accident conditions. Even under such conditions, an electrical signal should be within its expected range so that some mitigating actions can be taken based on the signal in the control room. For example, an industrial process control standard requires that the normal signal level for pressure, flow, and resistance temperature detector sensors be in the range of 4~20mA for most instruments. Whereas, in the case that an abnormal signal is expected from an instrument, such a signal should be refined through a signal validation process so that the refined signal could be available in the control room. For some abnormal signals expected under severe accident conditions, to date, diagnostics and response analysis have been evaluated with an equivalent circuit model of real instruments, which is regarded as the best method. The main objective of this paper is to introduce a program designed to implement a diagnostic and response analysis for equivalent circuit modeling. The program links signal analysis tool code to abnormal signal simulation engine code not only as a one body order system, but also as a part of functions of a PC-based ASSA (abnormal signal simulation analysis) module developed to obtain a varying range of the R-C circuit elements in high temperature conditions. As a result, a special function for abnormal pulse signal patterns can be obtained through the program, which in turn makes it possible to analyze the abnormal output pulse signals through a response characteristic of a 4~20 mA circuit model and a range of the elements changing with temperature under an accident condition.
机译:与基于设计的事故不同,在严峻的核事故条件下,在恶劣的环境下(例如高温高压,高湿度和高放射性),预计仪器可靠性会存在一些固有的不确定性。即使在这种情况下,电信号也应在其预期范围内,以便可以根据控制室中的信号采取某些缓解措施。例如,工业过程控制标准要求大多数仪器的压力,流量和电阻温度检测器传感器的正常信号电平在4〜20mA的范围内。然而,在预期从仪器收到异常信号的情况下,应通过信号验证过程对这种信号进行细化,以使细化的信号在控制室中可用。迄今为止,对于在严重事故情况下预期的某些异常信号,已经使用等效的真实仪器电路模型对诊断和响应分析进行了评估,这被认为是最佳方法。本文的主要目的是介绍一个程序,该程序旨在实现等效电路建模的诊断和响应分析。该程序不仅将信号分析工具代码与异常信号仿真引擎代码链接在一起,而且不仅作为一个人体订购系统,而且还作为基于PC的ASSA(异常信号仿真分析)模块功能的一部分而开发,该模块旨在获得变化范围的信号。高温条件下的RC电路元件。结果,可以通过该程序获得异常脉冲信号模式的特殊功能,从而可以通过4〜20 mA电路模型的响应特性和一系列元件来分析异常输出脉冲信号。在事故条件下随温度变化。

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  • 来源
    《Science and technology of nuclear installation》 |2012年第2期|656590.1-656590.15|共15页
  • 作者单位

    Severe Accident and PHWR Safety Research Division, Korea Atomic Energy Research Institute, 150 Dukjin-dong, Yusong-gu,Daejeon 305-353, Republic of Korea;

    Severe Accident and PHWR Safety Research Division, Korea Atomic Energy Research Institute, 150 Dukjin-dong, Yusong-gu,Daejeon 305-353, Republic of Korea;

    Severe Accident and PHWR Safety Research Division, Korea Atomic Energy Research Institute, 150 Dukjin-dong, Yusong-gu,Daejeon 305-353, Republic of Korea;

    Integrated Safety Assessment Division, KAERI, 150 Dukjin-dong, Yuseong-gu, Daejeon 305-353, Republic of Korea;

    Nuclear Safety Research Headquarter, KAERI, 150 Dukjin-dong, Yuseong-gu, Daejeon 305-353, Republic of Korea;

    Department of Optical Communications Engineering, Gwangju University, 52 Hyuodeok-ro, Nam-gu, Gwangju 503-703, Republic of Korea;

    Department of Electrical Engineering, Korea University, 5ka, Anam-dong, Sungbuk-ku, Seoul 136-701, Republic of Korea;

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