GB/T 15135-2018 English PDFUS$1719.00 ยท In stock
Delivery: <= 10 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 15135-2018: Gas turbines -- Vocabulary Status: Valid GB/T 15135: Historical versions
Basic dataStandard ID: GB/T 15135-2018 (GB/T15135-2018)Description (Translated English): Gas turbines -- Vocabulary Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: K56 Classification of International Standard: 27.040 Word Count Estimation: 86,841 Date of Issue: 2018-12-28 Date of Implementation: 2019-07-01 Older Standard (superseded by this standard): GB/T 15135-2002 Regulation (derived from): National Standard Announcement No. 17 of 2018 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 15135-2018: Gas turbines -- Vocabulary---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 turbines--Vocabulary ICS 27.040 K56 National Standards of People's Republic of China Replace GB/T 15135-2002 Gas turbine vocabulary (ISO 11086.1996, MOD) Published on.2018-12-28 2019-07-01 implementation State market supervision and administration China National Standardization Administration issued ContentForeword I 1 Scope 1 2 gas turbines --- types and types 1 3 gas turbines --- structure 3 4 Gas turbines---Auxiliary equipment and accessories 4 5 gas turbines - general vocabulary 8 6 Gas Turbines---Performance and Test 11 7 Turbine---Types and Types 17 8 Turbine---Structure 17 9 Turbine---Auxiliary Equipment and Accessories 20 10 Turbo---General Vocabulary 20 11 Turbo---Performance and Test 25 12 Compressor---Type and Type 26 13 Compressor --- Structure 26 14 Compressor---Auxiliary Equipment and Accessories 28 15 Compressor---General Vocabulary 29 16 Compressor --- Performance and Test 33 17 Combustion Chambers and Heaters---Types and Types 35 18 Combustion Chambers and Heaters - Principles, Design and Operation 36 19 Combustion Chamber and Heater---Structure 37 20 Combustion Chambers and Heaters---Auxiliary Equipment and Accessories 38 21 Combustion Chambers and Heaters---General Vocabulary 38 22 Combustion Chambers and Heaters---Performance and Test 39 23 Regenerative Heat Exchangers---Types and Types 40 24 regenerative heat exchanger --- structure 41 25 Regenerative Heat Exchanger---Auxiliary Equipment and Accessories 42 26 Regenerative Heat Exchanger---General Vocabulary 42 27 Regenerative Heat Exchanger---Performance and Test 42 28 combined cycle and cogeneration 43 Appendix A (informative) Structural changes in this standard compared to ISO 11086.1996 44 Appendix B (informative) Gas Turbine System Example 52 Appendix C (informative) Combined Cycle System Example 56 References 64 Index 65ForewordThis standard was drafted in accordance with the rules given in GB/T 1.1-2009. This standard replaces GB/T 15135-2002 "Gas Turbine Vocabulary". Major technical changes compared to GB/T 15135-2002 as follows. --- Modified the description of some words; --- Added some terms; --- Integrate the contents of Appendix C of GB/T 15135-2002 into the text. This standard uses the redrafting method to modify the ISO 11086.1996 "Gas Turbine Vocabulary". This standard has more structural adjustments than ISO 11086.1996. This standard and ISO 11086.1996 are listed in Appendix A. The chapter number is compared to the list. There are technical differences between this standard and ISO 11086.1996, and the terms involved in these differences have been passed on the outer margins of the margins. The vertical single line (|) is marked. The main technical differences are. --- Removed the definition 20.11, added some terms. This standard has made the following editorial changes. --- Added Chinese index. This standard was proposed by the China Machinery Industry Federation. This standard is under the jurisdiction of the National Gas Turbine Standardization Technical Committee (SAC/TC259). This standard was drafted. Dongfang Electric Group Dongfang Steam Turbine Co., Ltd., China Aerospace Shenyang Dawn Aviation Engine Co., Ltd. Division, Nanjing Gas Turbine Research Institute, Xi'an Jiaotong University, Zhuzhou Hangfa Science and Technology Southern Gas Turbine Co., Ltd., China Shipbuilding Heavy Industry Group Co., Ltd. Yusan Research Institute, China National Petroleum Corporation, West-East Gas Pipeline Branch. Drafters of this standard. Zhong Ruhao, Qu Fengrong, Li Qingsong, Feng Zhenping, Chen Wenzhao, Li Weishun, Zhou Shuzhong. The previous versions of the standards replaced by this standard are. ---GB/T 15135-1994, GB/T 15135-2002; ---GB 2900.47-1983. Gas turbine vocabulary1 ScopeThis standard defines the terms and definitions used in the gas turbine field. This standard applies to open cycle (using conventional combustion systems), closed cycle, semi-closed cycle and combined cycle gas turbines. 2 gas turbines - types and types 2.1 Gas turbine gasturbine A freewheeling rotary machine (single machine) that converts thermal energy into mechanical work, including compressors, equipment for heating working fluids (such as combustion chambers), turbines, Control system and auxiliary equipment. Note. See Appendix B for an example of a gas turbine system. 2.2 Gas turbine complete equipment gasturbineequipmentinsets Gas turbine powerplants, loads and equipment to ensure their proper operation, and others to improve their performance and control of the environment A complete set of equipment that affects the various equipment required. 2.3 Gas turbine power unit gasturbinepowerplant Gas turbine plant Gas turbines and the basic equipment necessary to generate useful power (eg, electrical, mechanical, or thermal). 2.4 Internal combustion gas turbine internalcombustiongasturbine Combustion occurs in the internal area and transfers heat to the working gas turbine. 2.5 External combustion gas turbine externalcombustiongasturbine Combustion occurs in the outer zone and transfers heat to the working gas turbine. 2.6 Single shaft gas turbine singleshaftgasturbine The compressor is mechanically connected to the turbine and the load through a shaft so that they rotate in unison and the transmission is generated by the turbo expansion process. Force gas turbine. 2.7 Multi-shaft gas turbine multi-shaftgasturbine A gas turbine having two or more turbine shafts that are mechanically independent of each other. Note. Multi-axis gas turbines can be split shaft gas turbines with one free-power turbine and single compressor-turbine shaft or with multiple compressors - turbine shaft Gas turbine. 2.8 Multi-rotor gas turbine multi-spoolgasturbine A multi-shaft combustion with several concentric rotors (usually concentric bushings, no intermediate cooling or reheating) with direct connection of the compressor and turbine ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 15135-2018_English be delivered?Answer: Upon your order, we will start to translate GB/T 15135-2018_English as soon as possible, and keep you informed of the progress. The lead time is typically 6 ~ 10 working days. 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Otherwise, follow the normal steps: Add to Cart -- Checkout -- Select your currency to pay.Question 5: Should I purchase the latest version GB/T 15135-2018?Answer: Yes. Unless special scenarios such as technical constraints or academic study, you should always prioritize to purchase the latest version GB/T 15135-2018 even if the enforcement date is in future. Complying with the latest version means that, by default, it also complies with all the earlier versions, technically. |