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US$419.00 ยท In stock Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 29363-2012: Water chiller with the vapor compression cycle for nuclear power plant Status: Valid
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| GB/T 29363-2012 | English | 419 |
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Water chiller with the vapor compression cycle for nuclear power plant
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GB/T 29363-2012
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Basic data | Standard ID | GB/T 29363-2012 (GB/T29363-2012) | | Description (Translated English) | Water chiller with the vapor compression cycle for nuclear power plant | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | J73 | | Classification of International Standard | 27.200 | | Word Count Estimation | 18,181 | | Quoted Standard | GB/T 2423.10; GB 4208-2008; GB/T 10870-2001; GB/T 12727; GB/T 13306; GB/T 13384; GB/T 13625; GB/T 15474-2010; GB/T 16702-1996; GB/T 17569-1998; GB/T 17758; GB/T 18430.1-2007; GB 19577; GB/T 22577-2008; GB 25131; JB/T 7249; NB/T 47012; HAF 003; HAF J0053; | | Regulation (derived from) | National Standards Bulletin No. 41 of 2012 | | 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 | | Summary | This standard specifies the use of motor-driven vapor compression refrigeration cycle used in nuclear power plants chillers terms and definitions, types and basic parameters, requirements, test methods, inspection rules, marking, packaging and storage. Th |
GB/T 29363-2012: Water chiller with the vapor compression cycle for nuclear power plant---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.
Water chiller with the vapor compression cycle for nuclear power plant
ICS 27.200
J73
National Standards of People's Republic of China
Nuclear power plant with steam compression cycle chiller
Issued on. 2012-12-31
2013-10-01 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Foreword
This standard was drafted in accordance with GB/T 1.1-2009 given rules.
The standard proposed by China Machinery Industry Federation.
This standard by the national refrigeration and air conditioning equipment Standardization Technical Committee (SAC/TC238) centralized.
This standard is drafted by. Zhejiang shield the artificial environment Co., Ltd., Hefei General Machinery Research Institute, Hefei Swan Refrigeration Technology
Ltd., China Nuclear Power Engineering Co., Ltd., China Guangdong Nuclear Power Engineering Co., Ltd., Zhejiang Guoxiang Air Conditioning Equipment Co., Johnson Controls provided the building
Preparation of Science and Technology (Wuxi) Co., Ltd., Guangdong Jeroen Air Conditioning Co., Ltd. Kunshan Taiwan Electrical and Mechanical Jia, Zhejiang Electric Co., Ltd. in Guangzhou.
Participated in the drafting of this standard. Trane air conditioning systems (China) Co., Ltd., Guangdong OAK Air Conditioning & Refrigeration Co., Zhuhai Gree
Co., Ltd., Zhejiang Science and Technology Co., Ltd. designed the wind.
The main drafters of this standard. Ge Yafei, Deng Lili, Shi Min, Kim from Zhuo, Zhang Fengge, GUO Jian-hui, Zhang Li standard, Hu Xianghua, Chenzhen Kai, Liu Yimin,
Zhu Jianjun, Zhang Vega, Chen Jun, Qi Fangcheng, Fangsheng Liang.
Nuclear power plant with steam compression cycle chiller
1 Scope
This standard specifies the use of motor-driven vapor compression refrigeration cycle is applied to chillers nuclear power plant (hereinafter referred to as "units") of
Terms and definitions, types and basic parameters, requirements, test methods, inspection rules, marking, packaging and storage.
This standard applies to the use of nuclear power units and nuclear grade seismic crew.
2 Normative references
The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein
Member. For undated references, the latest edition (including any amendments) applies to this document.
GB/T 2423.10 Environmental testing for electric and electronic products Part 2. Test methods Test Fc. Vibration (sinusoidal)
GB 4208-2008 shell protection (IP code)
GB/T 10870-2001 displacement and centrifugal water (heat pump) performance test methods
GB/T 12727 Nuclear power plant safety systems of electrical equipment qualification
GB/T 13306 signs
GB/T 13384 mechanical and electrical products packaging General technical conditions
GB/T 13625 Nuclear power plant safety systems of electrical equipment seismic qualification
GB/T 15474-2010 nuclear power plant instrumentation and control functions important to safety classification
GB/T 16702-1996 of PWR nuclear island mechanical equipment design specifications
GB/T 17569-1998 pressurized water reactor nuclear power plant grade items
GB/T 17758 unit air conditioner
GB/T 18430.1-2007 and in the No. 1 amendments vapor compression cycle with cold water (heat pump) - Part 1. industrial or commercial use
And similar uses cold water (heat pump)
GB 19577 chiller energy efficiency of limited value and energy efficiency rating
GB/T 22577-2008 Class 1E nuclear power plant cable General requirements
GB 25131 vapor compression cycle with cold water (heat pump) Safety requirements
JB/T 7249 term refrigeration equipment
NB/T 47012 refrigerating apparatus pressure vessels
HAF003 quality assurance nuclear power plant safety requirements
HAF-J0053 nuclear equipment seismic qualification test guide
EJ/T 1197-2007 Nuclear power plant safety level of electrical equipment qualification test methods and environmental conditions
3 Terms and Definitions
JB/T 7249 defined by the following terms and definitions apply to this document.
3.1
Nuclear power plant with vapor compression cycle chiller waterchilerwiththevaporcompressioncyclefornuclear
powerplant
For nuclear power plants or nuclear grade requirements for seismic requirements by using a motor-driven vapor compression refrigeration cycle chillers.
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