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Position: Chinese Standard in English/SH/T 3104-2013
SH/T 3104-2013   Code for the design of instrument installation for petrochemical industry (English Version)
Standard No.: SH/T 3104-2013 Status:valid remind me the status change

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Language:English File Format:PDF
Word Count: 15500 words Price(USD):380.0 remind me the price change

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Implemented on:2014-3-1 Delivery: via email in 1 business day
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Standard No.: SH/T 3104-2013
English Name: Code for the design of instrument installation for petrochemical industry
Chinese Name: 石油化工仪表安装设计规范
Professional Classification: SH    Professional Standard - Petrochemical
Issued by: MIIT
Issued on: 2013-10-17
Implemented on: 2014-3-1
Status: valid
Superseding:SH/T 3104-2000 Code for the Design of Instrument Installation for Petrochemical
Language: English
File Format: PDF
Word Count: 15500 words
Price(USD): 380.0
Delivery: via email in 1 business day
1 Scope This specification specifies the requirements for design of filed instrument installation in petrochemical industry, excluding the installation design of wire, cable, compensation conductor and instrument thermal insulation, heat tracing and the instrument in control room as well as analysis instrument, safety and control system. This specification is applicable to the design of field instrument installation in petrochemical industry and for the newly-built, extended and rebuilt engineering in the factory making fuel and chemical products from coal. 2 Normative References The following referenced documents are indispensable for the application of this specification. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB 4075-2009 Sealed Radioactive Sources - General Requirements and Classification GB 11806-2004 Regulations for the Safe Transport of Radioactive Material GB 14052-1993 Radionuclide Gauges - Gauges Designed for Permanent Installation GB 18871-2002 Basic Standards for Protection against Ionizing Radiation and for the Safety of Radiation Sources GBZ 125-2009 Radiological Protection Requirements for Gauges Containing Sealed Radioactive Source GBZ 128-2002 Specifications of Individual Monitoring for Occupational External Exposure GBZ 114-2006 Radiological Protection Standards for Sealed Radioactive Sources and Container of Sealed γ Radiation Sources 3 Terms and Definitions For the purpose of this specification, the following terms and definitions apply. 3.1 Environmental condition The range of parameter values of surrounding environment required by function unit protection or normal work. 3.2 Operating limits The range of operating conditions possibly bearable by device and not likely to cause permanent reduction of operating characteristics. 3.3 Ambient temperature The temperature measured at typical location in the local environment (including the adjacent heating device) where the measurement and control devices are under normal operation, storage and transportation. 3.4 Vibration The movement reciprocating and/or rotating periodically with basic frequency. 3.5 Process The operation of making one or a series of physical conversion or chemical change. 3.6 Process measurement Get process variable value by physical or chemical method. 3.7 Measuring sensor The sensitive element used during measurement to convert the actual physical or chemical variable of the process to the signal easy to use or convert. 3.8 Device The device, device combination or element combination used to realize intended function. 3.9 Meter The device used to measure or indicate measured variable. 3.10 Measurement transducer The variable device in physical or chemical state used to convert variable in physical or chemical state to the same or other properties for the convenience of further usage or treatment. 3.11 Transmitter
Foreword i 1 Scope 2 Normative References 3 Terms and Definitions 4 General Requirements 4.1 Installation Location 4.2 Process Connection 4.3 Impulse Line 4.4 Instrument Support 5 Temperature Measurement Instrument 5.1 Temperature Element Protective Well 5.2 Installation Requirement 6 Pressure Measurement Instrument 6.1 Tapping Location 6.2 Installation Requirement 7 Flow Measurement Instrument 7.1 General Requirement 7.2 Standard Throttle Device 7.3 Nonstandard Throttle Device 7.4 Target Flowmeter 7.5 Turbine Flowmeter 7.6 Positive Displacement Flowmeter 7.7 Electromagnetic Flowmeter 7.8 Vortex Flowmeter 7.9 Coriolis Mass Flowmeter 7.10 Thermal Mass Flowmeter 7.11 Ultrasonic Flowmeter 7.12 Rotameter 8 Level Measurement Instrument 8.1 General Requirement 8.2 Glass Level Gauge 8.3 Magnetic Float Level Gauge 8.4 Differential Pressure Level Gauge 8.5 External Float Level Gauge 8.6 Internal Float Level Gauge 8.7 Internal Ball Float Level Gauge 8.8 Magnetostrictive Level Gauge 8.9 Ultrasonic Level Gauge 8.10 Radioactive Level Instrument 8.11 Servo Level Gauge 8.12 Radar Level Gauge 8.13 Level Switch 9 Control Valve and On/Off Valve 9.1 Installation Location 9.2 Installation Dimension 9.3 Installation Orientation 9.4 Piping Design Appendix A (Informative) Minimum Nominal Pressure of Connecting Flange Appendix B (Informative) Flange Gasket and Fastener Appendix C (Informative) Common Specification of Instrument Process Connection Appendix D (Informative) Primary Block Valve Arrangement in Safety Protection Measuring Appendix E (Informative) Tube and Pipe Appendix F (Informative) Piping Expanding for Temperature Instrument Installation Appendix G (Informative) Typical Installation Drawing of Temperature Instrument Appendix H (Informative) Pressure Tapping Orientation Appendix J (Informative) Typical Installation Drawing of Pressure Instrument Appendix K (Informative) Piping Arrangement of PD Flowmeter for Custody Transfer Appendix L (Informative) Typical Installation Drawing of Flow Throttle Device and Transmitter Appendix M (Informative) Meter run Length of Standard Throttle Device Appendix N (Informative) Typical Installation Drawing of Level Instrument Appendix P (Informative) Typical Form of Standpipe of Level Instrument Bibliography Explanation of Wording in this Specification
Referred in SH/T 3104-2013:
* GB 4075-2009 Sealed radioactive sources - General requirements and classification
* GB 11806-2004 Regulations for the safe transport of radioactive material
* GB 14052-1993 gauges - Gauges designed for permanent installation
* GB 18871-2002 Basic Standards for Protection against Ionizing Radiation and for the Safety of Radiation Sources
* GBZ 125-2009 Radiological protection requirements for gauges containing sealed radioactive source
* GBZ 128-2002 Specificaitons of individual monitoring for occupational external exposure
* GBZ 114-2006 Radiological protection standards for sealed radioactive sources and container of sealed γ radiation sources
SH/T 3104-2013 is referred in:
* SY/T 0090-2006 Code of Instrument Control System Design for Oil-gas Fields and Pipelines
* GB/T 20901-2007 Specification for equipping and managing of measuring instrument of energy in petroleum and petrochemical industry
*AQ 3035-2010 General technical specification for dangerous chemicals major hazard installations monitoring and controlling
*AQ 3036-2010 Setting specifications for safety monitoring and controlling equipments in dangerous chemicals major hazard installations Tanks section
Code of China
Standard
SH/T 3104-2013  Code for the design of instrument installation for petrochemical industry (English Version)
Standard No.SH/T 3104-2013
Statusvalid
LanguageEnglish
File FormatPDF
Word Count15500 words
Price(USD)380.0
Implemented on2014-3-1
Deliveryvia email in 1 business day
Detail of SH/T 3104-2013
Standard No.
SH/T 3104-2013
English Name
Code for the design of instrument installation for petrochemical industry
Chinese Name
石油化工仪表安装设计规范
Chinese Classification
Professional Classification
SH
ICS Classification
Issued by
MIIT
Issued on
2013-10-17
Implemented on
2014-3-1
Status
valid
Superseded by
Superseded on
Abolished on
Superseding
SH/T 3104-2000 Code for the Design of Instrument Installation for Petrochemical
Language
English
File Format
PDF
Word Count
15500 words
Price(USD)
380.0
Keywords
SH/T 3104-2013, SH 3104-2013, SHT 3104-2013, SH/T3104-2013, SH/T 3104, SH/T3104, SH3104-2013, SH 3104, SH3104, SHT3104-2013, SHT 3104, SHT3104
Introduction of SH/T 3104-2013
1 Scope This specification specifies the requirements for design of filed instrument installation in petrochemical industry, excluding the installation design of wire, cable, compensation conductor and instrument thermal insulation, heat tracing and the instrument in control room as well as analysis instrument, safety and control system. This specification is applicable to the design of field instrument installation in petrochemical industry and for the newly-built, extended and rebuilt engineering in the factory making fuel and chemical products from coal. 2 Normative References The following referenced documents are indispensable for the application of this specification. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB 4075-2009 Sealed Radioactive Sources - General Requirements and Classification GB 11806-2004 Regulations for the Safe Transport of Radioactive Material GB 14052-1993 Radionuclide Gauges - Gauges Designed for Permanent Installation GB 18871-2002 Basic Standards for Protection against Ionizing Radiation and for the Safety of Radiation Sources GBZ 125-2009 Radiological Protection Requirements for Gauges Containing Sealed Radioactive Source GBZ 128-2002 Specifications of Individual Monitoring for Occupational External Exposure GBZ 114-2006 Radiological Protection Standards for Sealed Radioactive Sources and Container of Sealed γ Radiation Sources 3 Terms and Definitions For the purpose of this specification, the following terms and definitions apply. 3.1 Environmental condition The range of parameter values of surrounding environment required by function unit protection or normal work. 3.2 Operating limits The range of operating conditions possibly bearable by device and not likely to cause permanent reduction of operating characteristics. 3.3 Ambient temperature The temperature measured at typical location in the local environment (including the adjacent heating device) where the measurement and control devices are under normal operation, storage and transportation. 3.4 Vibration The movement reciprocating and/or rotating periodically with basic frequency. 3.5 Process The operation of making one or a series of physical conversion or chemical change. 3.6 Process measurement Get process variable value by physical or chemical method. 3.7 Measuring sensor The sensitive element used during measurement to convert the actual physical or chemical variable of the process to the signal easy to use or convert. 3.8 Device The device, device combination or element combination used to realize intended function. 3.9 Meter The device used to measure or indicate measured variable. 3.10 Measurement transducer The variable device in physical or chemical state used to convert variable in physical or chemical state to the same or other properties for the convenience of further usage or treatment. 3.11 Transmitter
Contents of SH/T 3104-2013
Foreword i 1 Scope 2 Normative References 3 Terms and Definitions 4 General Requirements 4.1 Installation Location 4.2 Process Connection 4.3 Impulse Line 4.4 Instrument Support 5 Temperature Measurement Instrument 5.1 Temperature Element Protective Well 5.2 Installation Requirement 6 Pressure Measurement Instrument 6.1 Tapping Location 6.2 Installation Requirement 7 Flow Measurement Instrument 7.1 General Requirement 7.2 Standard Throttle Device 7.3 Nonstandard Throttle Device 7.4 Target Flowmeter 7.5 Turbine Flowmeter 7.6 Positive Displacement Flowmeter 7.7 Electromagnetic Flowmeter 7.8 Vortex Flowmeter 7.9 Coriolis Mass Flowmeter 7.10 Thermal Mass Flowmeter 7.11 Ultrasonic Flowmeter 7.12 Rotameter 8 Level Measurement Instrument 8.1 General Requirement 8.2 Glass Level Gauge 8.3 Magnetic Float Level Gauge 8.4 Differential Pressure Level Gauge 8.5 External Float Level Gauge 8.6 Internal Float Level Gauge 8.7 Internal Ball Float Level Gauge 8.8 Magnetostrictive Level Gauge 8.9 Ultrasonic Level Gauge 8.10 Radioactive Level Instrument 8.11 Servo Level Gauge 8.12 Radar Level Gauge 8.13 Level Switch 9 Control Valve and On/Off Valve 9.1 Installation Location 9.2 Installation Dimension 9.3 Installation Orientation 9.4 Piping Design Appendix A (Informative) Minimum Nominal Pressure of Connecting Flange Appendix B (Informative) Flange Gasket and Fastener Appendix C (Informative) Common Specification of Instrument Process Connection Appendix D (Informative) Primary Block Valve Arrangement in Safety Protection Measuring Appendix E (Informative) Tube and Pipe Appendix F (Informative) Piping Expanding for Temperature Instrument Installation Appendix G (Informative) Typical Installation Drawing of Temperature Instrument Appendix H (Informative) Pressure Tapping Orientation Appendix J (Informative) Typical Installation Drawing of Pressure Instrument Appendix K (Informative) Piping Arrangement of PD Flowmeter for Custody Transfer Appendix L (Informative) Typical Installation Drawing of Flow Throttle Device and Transmitter Appendix M (Informative) Meter run Length of Standard Throttle Device Appendix N (Informative) Typical Installation Drawing of Level Instrument Appendix P (Informative) Typical Form of Standpipe of Level Instrument Bibliography Explanation of Wording in this Specification
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Keywords:
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