BS IEC 62397-2007 Nuclear power plants - Instrumentation and control important to safety - Resistance temperature detectors《核电站 对安全性重要的仪器装置和控制系统 电阻温度探测器》.pdf
《BS IEC 62397-2007 Nuclear power plants - Instrumentation and control important to safety - Resistance temperature detectors《核电站 对安全性重要的仪器装置和控制系统 电阻温度探测器》.pdf》由会员分享,可在线阅读,更多相关《BS IEC 62397-2007 Nuclear power plants - Instrumentation and control important to safety - Resistance temperature detectors《核电站 对安全性重要的仪器装置和控制系统 电阻温度探测器》.pdf(26页珍藏版)》请在麦多课文档分享上搜索。
1、 g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58safety Resistance temperature detectorsICS 27.120.20,Nuclear power plants Instrumentation and contr
2、ol important to BRITISH STANDARDBS IEC 62397:2007BS IEC 62397:2007This British Standard was published under the authority of the Standards Policy and Strategy Committee on 29 June 2007 BSI 2007ISBN 978 0 580 52907 8Amendments issued since publicationAmd. No. Date Commentscontract. Users are responsi
3、ble for its correct application.Compliance with a British Standard cannot confer immunity from legal obligations.National forewordThis British Standard was published by BSI. It is the UK implementation of IEC 62397:2007. The UK participation in its preparation was entrusted to Technical Committee NC
4、E/8, Reactor instrumentation.A list of organizations represented on this committee can be obtained on request to its secretary.This publication does not purport to include all the necessary provisions of a INTERNATIONAL STANDARD IEC62397First edition2007-05Nuclear power plants Instrumentation and co
5、ntrol important to safety Resistance temperature detectors Reference number IEC/CEI 62397:2007 BS IEC 62397:2007CONTENTS INTRODUCTION.4 1 Scope.62 Normative references .63 Terms and definitions .64 Design and construction requirements8 4.1 General .8 4.2 Reliability 8 4.3 Materials .8 4.3.1 Radiatio
6、n dose to materials .8 4.3.2 Resistance element material9 4.3.3 Seals and adhesives9 4.4 Connections 11 4.4.1 Electrical connection .11 4.4.2 Mechanical connection 12 4.5 Workmanship 12 4.6 Ambient conditions (normal and accident operations) 13 4.7 RTD performance 13 4.7.1 Accuracy .13 4.7.2 Resista
7、nce temperature calibration14 4.7.3 Self-heating error 14 4.7.4 Thermal response time 14 4.7.5 Interchangeability 15 4.7.6 Electrical insulation resistance 15 4.7.7 Repeatability (thermal shock) 15 4.7.8 Vibration16 4.7.9 Steam test.16 4.7.10 Insulation resistance after storage.16 4.7.11 In situ res
8、ponse time testing17 4.8 Identification17 4.9 Failure mode and effects analysis .17 5 Inspection and tests .18 5.1 General .18 5.2 Inspection and test failure .18 5.3 Inspection and test reports 18 5.4 Qualification tests18 5.4.1 Calibration procedure 20 5.4.2 Thermal cycling .20 5.4.3 Insulation br
9、eakdown test 20 5.4.4 Examination 20 5.5 Production tests 20 6 Technical information required .21 Bibliography22 BS IEC 62397:2007 2 Figure 1 Form and dimensions of an RTD 10 Figure 2 Installation of a rigid RTD (Type I)10Figure 3 Installation of a rigid RTD (Type II) long insertion.11 Figure 4 Inst
10、allation of a rigid RTD (Type II) short insertion .11 BS IEC 62397:2007 3 INTRODUCTION a) Technical background, main issues and organisation of the standard This standard describes the requirements for the design, material selection, procurement, construction, and testing of resistance temperature d
11、etectors (RTDs) being used in nuclear power plants (NPPs). These RTDs may be used in both the nuclear safety I however, this standard does not exclude any other design of RTD which may be required for certain special applications in various types of reactors. RTDs can be supplied in different intern
12、al constructions, which depend on the manufacture, qualifications, and applications. For RTD being used in an NPP, the design and structure of the RTD should consider the environmental conditions in which the detector is being used under normal operating and under design basis accident conditions, a
13、s well as the qualification tests specified by the user1. The use of a flexible mineral-insulated (MI) cable between the RTD and the connector is commonly adopted, and the user may also adopt any other construction. A variation of this design may include a rigid exterior sheath over the MI cable bet
14、ween the RTD and the connector, these being welded to each other. The scope of this standard does not cover the design, material selection, and construction of the thermowell, the guide tube, the extension cable, and the temperature transmitter or bridge which may be associated with the RTD. 2 Norma
15、tive references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. IEC 60780:1998, Nuclear power pla
16、nts Electrical equipment of the safety system Qualification IEC 60980:1989, Recommended practices for seismic qualification of electrical equipment of the safety system for nuclear generating stations IEC 61224, Nuclear reactors Response time in resistance temperature detectors (RTD) In situ measure
17、ments 3 Terms and definitions For the purposes of this document, the following terms and definitions apply. 1The user corresponds to the party or the company that uses the RTD in a NPP for measuring the temperature in a safety or a non-safety system. The term user may also refer to the purchaser or
18、the buyer, or the operator of the RTD. BS IEC 62397:2007 6 3.1 accuracy of measurement closeness of the agreement between the result of a measurement and the conventional true value of the measurand IEV 394-40-35 3.2 calibration set of operations that establish, under specified conditions, the relat
19、ionship between values of quantities indicated by measuring instrument or measuring system, or values represented by material measure or a reference material, and the corresponding values realized by standards IEV 394-40-43 3.3 drift variation in sensor or instrument channel output that may occur be
20、tween calibrations that cannot be related to changes in the process variable or environmental conditions IEC 62385, definition 3.6 3.4 performance monitoring process of demonstrating that an installed instrument channel continues to perform its intended function of monitoring the process variable wi
21、th the expected accuracy, response time, and stability IEC 62385, definition 3.14 3.5 resistance temperature detector (RTD) detector generally made up of a stainless steel cylindrical barrel protecting a platinum resistor whose resistance varies with temperature. This detector is placed in the pipin
22、g containing the fluid whose temperature is measured in this way. It can be directly immersed in the fluid or protected by an intermediate casing called the thermowell NOTE 1 Mounting means or connection heads may be included. The temperature-sensing resistor can be made of platinum, nickel tungsten
23、, copper, or other metals. However, a platinum sensor is commonly used in the RTD in an NPP; therefore, a platinum resistance thermometer is referred to in this standard. NOTE 2 In this standard, the term “sensor” describes the RTD unit with all its associated protection, for example, barrel or ther
24、mowell. For most applications of measuring process fluid temperature in an NPP, the platinum resistor sensor is installed inside a stainless steel thermowell. For air temperature measurement, a direct sensor may be used. 3.6 response time the time required for the output signal of a component to rea
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