GB/T 20936.3-2017 English PDFUS$759.00 · In stock
Delivery: <= 6 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 20936.3-2017: Gas detectors for explosive atmospheres -- Part 3: Guidance on functional safety of fixed gas detection systems Status: Valid GB/T 20936.3: Historical versions
Basic dataStandard ID: GB/T 20936.3-2017 (GB/T20936.3-2017)Description (Translated English): Gas detectors for explosive atmospheres -- Part 3: Guidance on functional safety of fixed gas detection systems Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: K35 Classification of International Standard: 29.260.20 Word Count Estimation: 38,339 Date of Issue: 2017-12-29 Date of Implementation: 2018-07-01 Regulation (derived from): National Standards Bulletin 2017 No. 32 Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China GB/T 20936.3-2017: Gas detectors for explosive atmospheres -- Part 3: Guidance on functional safety of fixed gas detection systems---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order. Gas detectors for explosive atmospheres - Part 3. Guidance on functional safety of fixed gas detection systems ICS 29.260.20 K35 National Standards of People's Republic of China Gas detectors for explosive atmospheres - Part 3. Fixed gas detection system Functional Safety Guide Gasdetectorsforexplosiveatmospheres-Part 3. (IEC 60079-29-3.2014, Explosiveatmospheres-Part 29-3.Gasdetectors- Guidance onfunctionalsafetyoffixedgasdetectionsystems, MOD) 2017-12-29 Posted 2018-07-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China China National Standardization Administration released Directory Foreword Ⅲ Introduction Ⅴ 1 Scope 1 2 Normative references 1 3 Terms and definitions 2 4 Requirements 4 4.1 General 4 4.2 demand rate 4 5 gas detection characteristics 4 5.1 Purpose 4 5.2 Features 4 6 Functional Safety Management 7 6.1 Purpose 7 6.2 Requirements 7 6.3 Ability 8 7 basic requirements 8 7.1 Purpose 8 7.2 Requirements 8 Special requirements for gas detection 13 8.1 Purpose 13 8.2 Requirements 13 9 Alternative Control Unit (Logical Solver) 17 9.1 Purpose 17 9.2 Requirements 17 Factory Acceptance Test 10.1 Purpose 17 10.2 Requirements 11 Installation and commissioning 18 11.1 Purpose 18 11.2 Requirements 19 12 system confirmation 20 12.1 Purpose 20 12.2 Requirement 20 13 Operation and Maintenance 20 13.1 Purpose 20 13.2 Requirement 21 System changes 21 14.1 Purpose 21 14.2 Requirement 21 15 system outage 22 15.1 Purpose 22 15.2 Request 22 16 Documentation 23 16.1 Purpose 23 16.2 Requirements 23 Appendix A (informative) Typical Applications 24 Appendix B (informative) standard reference 27 Appendix C (Informative) Requirements Description 28 References 30 ForewordGB/T 20936 "explosive gas detector" is divided into several parts. --- Part 1. Flammable gas detector performance requirements; --- Part 2. Selection, installation, use and maintenance of combustible gases and oxygen detectors; --- Part 3. Fixed gas detection system Functional Safety Guide; --- Part 4. Open path combustible gas detector performance requirements; This section GB/T 20936 Part 3. This section drafted in accordance with GB/T 1.1-2009 given rules. This section uses the redrafted law Amendment uses IEC 60079-29-3.2014 "Explosive Environment Part 29-3. Gas detector solid Fixed gas detection system Functional Safety Guide. " This section and the main technical differences IEC 60079-29-3.2014 are as follows. --- On the normative references, this section made a technical difference with the adjustment to the application of China's technical conditions, adjust the situation Concentration reflected in the second chapter "Normative references", the specific adjustments are as follows. ● GB/T 20438 (all parts) instead of IEC 61508 (all parts), the two parts of the standard consistency between the procedures Degree is as follows. ● Functional safety of electrical/electronic/programmable electronic safety-related systems GB/T 20438.1-2017 Part 1. General requirements (IEC 61508-1.2010, IDT); ● Functional safety of electrical/electronic/programmable electronic safety-related systems GB/T 20438.2-2017 Part 2. Requirements for electrical/electronic/programmable electronic safety-related systems (IEC 61508-2.2010, IDT); ● Functional safety of electrical/electronic/programmable electronic safety-related systems GB/T 20438.3-2017 Part 3. Software Requirements (IEC 61508-3.2010, IDT); ● GB/T 20438.4-2017 Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 4. Definitions and Abbreviations (IEC 61508-4.2010, IDT); ● Functional safety of electrical and electronic/programmable electronic safety-related systems GB/T 20438.5-2017 Part 5. Examples of methods for determining safety integrity levels (IEC 61508-5.2010, IDT); ● Functional safety of electrical/electronic/programmable electronic safety-related systems GB/T 20438.6-2017 Part 6. Guidelines for the application of GB/T 20438.2 and GB/T 20438.3 (IEC 61508-6.2010, IDT); ● Functional safety of electrical/electronic/programmable electronic safety-related systems GB/T 20438.7-2017 Part 7. Overview of technologies and measures (IEC 61508-7.2010, IDT). ● GB/T 20936.1-2017 instead of IEC 60079-29-1, GB/T 20936.2-2017 instead of IEC 60079- 29-2.2007, with GB/T 20936.4-2017 instead of IEC 60079-29-4, with GB/T 20438.1 instead IEC 61508-1, IEC 61508-2 with GB/T 20438.2 and IEC 61508-3 with GB/T 20438.3. ● Increased reference to GB/T 21109 (all parts) and GB/T 18268.1. This section made the following editorial changes. --- Modify the standard name. This part is proposed by China Electrical Equipment Industry Association. This part of the National Standardization Technical Committee explosion-proof electrical equipment (SAC/TC9) centralized. This part of the drafting unit. Shanghai Industrial Automation Instrumentation Research Institute, Nanyang Institute of Explosion Electric Co., Ltd., CNOOC (China) Limited Company Shanghai Branch, Shenzhen Te An Electronics Co., Ltd., Han Wei Technology Group Co., Ltd., Wuxi Green Link Security Equipment Co., Ltd. Division, British Sen Electric Systems (Shanghai) Co., Ltd., Huarui Scientific Instruments (Shanghai) Co., Ltd., Shanghai Instrumentation Automatic Control System Testing Institute. The main drafters of this section. Zhang Yi Sen, Lu Qiao, Zhang Gang, Lei Juntao, Xu Changhong, Niu Xiaomin, Zhang Liang, Li Xin, Xu Wei, Li Jiajia, Xie Yalian, Zhuang Ling Yun.IntroductionFixed gas detection systems have been used for many years to perform safety instrumented functions. Like other instrumentation systems, fixed gas detection system A system typically contains single or multiple gas detector inputs, a control unit and one or more terminal components or outputs. Fixed gas exploration The measurement system may also include some additional peripherals, such as a gas sampling system or a gas conditioning system. If a fixed gas exploration Measuring Systems and Peripherals To achieve effective safety instrumented functions, the entire system must meet specific minimum standards and performance levels. Safety Integrity Level (SIL) or SIL capability required for individual functional units, number of sensing points, mounting position, redundancy Degree, Routine Maintenance Management, Especially Response Check, Calibration, and Other Gas Detection Features (Such as Sampling System Design) Table system integrity has a greater impact. However, independent functional integrity of each meter safety function should also be considered. This section presents fixed, electronic/electrical/programmable electronic systems for risk reduction or as an additional safety protection system Gas detection system minimum standards and performance levels. This section does not apply to portable gas detectors or not for the purpose of reducing the risk of fixed gas detection system. But this section can be As best practice literature for such devices or systems. This section refers to the "gas detection system", not only applies to the internal multi-level alarm and switch output independent gas detection It is also suitable for complex, stand-alone gas detection systems (see Appendix A Typical Applications). This section considers the supply chain complexity that gas detector manufacturers, suppliers, and system integrators may encounter, including but not including Limited to. --- Fixed gas detection equipment manufacturers, suppliers, system integrators will use a separate gas detector, and integrated into the overall safety System (or similar). --- Fixed gas detector manufacturers, suppliers, system integrators to design and use of fixed gas detection subsystem, including the association And/or peripheral gas detection equipment and integrated into the overall safety system (or similar). --- Design and use of a complete fixed gas detection system, including associated and/or peripheral gas detection equipment, and as a whole safety System-wide. Note 1. GB/T 20438 Part 1, Part 2 and Part 3 specify the design of independent gas detectors, control units and terminal components. This section regulations Set the design guidelines for peripherals. Before applying this section, you should first understand the application and classification of fixed gas detection system. There are three main types of applications. --- As a precautionary system, the entire system or individual instrumentation control loop has safety features and clearly defined safety integrity. --- As a mitigation system. The entire system or individual instrumentation control loop with safety features and clearly defined safety integrity. --- As an additional safety protection system. Including and instrumentation safety systems parallel (standby) fixed gas detection system or independent The meter control loop needs to be operational only if the primary safety instrumented system fails or when another protective system fails. In any case, the use of gas detection additional safety protection system should not be included in the hardware safety fault tolerance of the instrument safety system (HFT). The fixed gas detection system shown in Figure 1 may be operated several times per year depending on the application and should therefore be specified according to safety requirements Rate (low demand mode), (eg, reference> 1 time/year, < 10 times/year). Figure 1 gas detection system structure In order to facilitate the analysis of the possible complexity and unique requirements of stationary gas detection systems, stationary gas detection systems can be divided into different The functional units, each functional unit complexity can be different. A functional unit can be a simple gas detector or external Something around the device combination. Each functional unit shall be independent during this initial design phase and/or GB/T 20438 Evaluate and derive safety data for each functional unit. NOTE 2. The basic subsystem/subsystem components (eg, gas detectors, logic controllers/solvers, etc.) shall be in accordance with part 1, part 2 and section 3 of IEC 60384 Line design. Functional units in accordance with the requirements of this section to form a complete fixed gas detection system. A single functional unit is used in different configurations , There is no need to re-evaluate, just re-evaluate the functional unit combinations. This section is based on the safety life cycle model GB/T 20438 regulations, and for a specific phase of the typical safety life cycle supplemented with attached Add information and support information. All individuals or companies involved in the supply chain of a fixed gas detection system shall comply with the provisions of this section of the "functional safety management" Claim. Note 3. Functional safety management is required at all stages of the safety lifecycle, be they products, subsystems, systems provisioning or services provided. In this section, SIL capabilities do not consider gas detector coverage or gas/vapor transmission to the measuring point. GB/T 20936.2- 2017 has provisions for both. Table 1 gives suggestions for the most relevant terms for typical jobs. Table 1 describes the typical work and the most relevant terms Applicable object definition meets the Headquarters Points Claim gas Probe Special Features Safety management Basic Claim gas Probe Special Special Alternative control unit (logic The solution Calculator) factory acceptance test installation And test run system confirm (SAT) run maintain system change system Outage Document Article 3 4 5 6 7 8 9 10 11 12 13 14 15 16 Consultant contractor Sellers System integrator manufacturer Note that each of the above categories of personnel will be sent to participate in the following activities. General management Design Engineering/Management System Engineer/Management Installation Engineering/Management Commissioning Engineer/Management Service Engineer/Management Quality Engineer/Management trainer Operation and maintenance "Most suitable;" "Fit;" "Good. End users, regulators, inspection agencies need to be familiar with GB/T 20438 series of standards. NOTE See Appendix B for life cycle guidance on gas detection. Gas detectors for explosive atmospheres - Part 3. Fixed gas detection system Functional Safety Guide1 ScopeGB/T 20936 provisions of this part of the fixed gas detection system design and implementation guidelines. This section applies to fixed gas detection system, including associated and/or peripheral gas detection equipment, in line with GB/T 20438 and GB/T 21109 safety-related application requirements, for the detection of flammable gases, vapors and oxygen. This section also applies to toxic gas detection. Gas detectors and gas detection control unit (logic solver) performance requirements, given by the other parts of this standard or related standards. This section specifies the safety functional integrity requirements. This section with reference to the structure and concept of GB/T 20438, given fixed gas detection system and its associated and/or peripheral gas detection Equipment safety requirements, and given the special requirements of fixed gas detection system, shown in Figure 2. Figure 2 related to the safety instrumented system standard Gas detection system is difficult to achieve SIL4 safety integrity level, this section does not consider SIL4 safety integrity level. Note. Fixed gas detection systems with safety integrity levels above SIL2 are seldom used. This section applies to fixed gas detection system can include the following hardware functional units. --- Gas sensing element/transmitter; --- Gas detection control unit (logic solver); --- Gas sampling (single and multiple); --- Gas regulation; --- Automatic gas calibration; --- Output module (if not part of the control unit).2 Normative referencesThe following documents for the application of this document is essential. For dated references, only the dated version applies to this article Pieces. For undated references, the latest edition (including all amendments) applies to this document. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 20936.3-2017_English be delivered?Answer: Upon your order, we will start to translate GB/T 20936.3-2017_English as soon as possible, and keep you informed of the progress. The lead time is typically 4 ~ 6 working days. The lengthier the document the longer the lead time.Question 2: Can I share the purchased PDF of GB/T 20936.3-2017_English with my colleagues?Answer: Yes. The purchased PDF of GB/T 20936.3-2017_English will be deemed to be sold to your employer/organization who actually pays for it, including your colleagues and your employer's intranet.Question 3: Does the price include tax/VAT?Answer: Yes. 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