SAE AS681 Gas Turbine Engine Performance Presentation for Computer Programs

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Product Code:SAE AS681
Title:Gas Turbine Engine Performance Presentation for Computer Programs
Issuing Committee:S-15 Gas Turbine Perf Simulation Nomenclature And Interfaces
Scope:This SAE Aerospace Standard (AS) provides the method for presentation of gas turbine engine steady state and transient performance calculated using computer programs. It also provides for the presentation of parametric gas turbine data including performance, weight and dimensions computed by computer programs.This standard is intended to facilitate calculations by the program user without unduly restricting the method of calculation used by the program supplier. This standard is applicable to, but not limited to the following program types: data reduction, steady-state, transient, preliminary design, study, specification, status & parametric programs.
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【英文标准名称】:Secondarybatteriesforthepropulsionofelectricroadvehicles-Part2:Dynamicdischargeperformancetestanddynamicendurancetest(IEC61982-2:2002);GermanversionEN61982-2:2002+Corrigendum1:2002
【原文标准名称】:电动道路车辆驱动用二次电池.第2部分:动态放电性能试验和动态耐久试验
【标准号】:EN61982-2-2002
【标准状态】:现行
【国别】:
【发布日期】:2003-05
【实施或试行日期】:2003-05-01
【发布单位】:欧洲标准学会(EN)
【起草单位】:
【标准类型】:()
【标准水平】:()
【中文主题词】:再充电;容量;动力传动系统;试验;效率;牵引用蓄电池;蓄电池组;蓄电池容量;电池放电;电动汽车;规范(验收);运载工具;道路车辆;城市交通;电池供电装置;定义;寿命;电池;电传动系统;蓄电池
【英文主题词】:Batteries;Batterycapacity;Batterycharging;Battery-powereddevices;Capacity;Citytraffic;Definition;Definitions;Efficiency;Electriccells;Electricaltransmissionsystems;Electromobiles;Life(durability);Powertransmissionsystems;Recharging;Roadvehicles;Specification(approval);Storagebatteries;Testing;Tractionbatteries;Vehicles
【摘要】:
【中国标准分类号】:K84
【国际标准分类号】:29_220_20
【页数】:14P.;A4
【正文语种】:英语


Product Code:SAE AIR1343
Title:Liquid Propellant Gas Generation Systems
Issuing Committee:A-6c6 Power Sources Committee
Scope:This information report presents a preliminary discussion of liquid propellant gas generation (LPGG) systems. A LPGG system, as used herein, is defined as a system which stores a liquid propellant and, on command, discharges and converts the liquid propellant to a gas. The LPGG system can interface with a gas-to-mechanical energy conversion device to make up an auxiliary power system. The purpose of this report is to provide general information on the variety of components and system arrangements which can be considered in LPGG design, summarize advantages and disadvantages of various approaches and provide basic sizing methods suitable for initial tradeoff purposes.