SAE AS8054 Airborne Engine Vibration Monitoring (Evm) System, Guidelines for Performance Standard For

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Product Code:SAE AS8054
Title:Airborne Engine Vibration Monitoring (Evm) System, Guidelines for Performance Standard For
Issuing Committee:E-32 Aerospace Propulsion Systems Health Management
Scope: This SAE Aerospace Standard (AS) provides guidelines for the functional, performance, qualification and acceptance testing, and documentation requirements for the components of an airborne engine vibration monitoring (EVM) system which is intended for use as a turbojet engine rotor unbalance indicating system, per FAR 25.1305 (D)(3) on transport category airplanes. For the purpose of this document, this means a system which can provide real-time flight deck displays of engine vibration caused by rotor unbalance, throughout the flight envelope, which are suitable for: a. relating to engine vibration limits (where such limits are specified), b. use in ice shedding procedures, and c. helping the flight crew to determine which engine has the higher level of vibration, following an engine damage event. As a minimum, the functional capability for such a system shall include the ability to compute and display vibration levels specifically related to the rotational speed(s) of the engine rotor(s). Systems which can produce only broadband vibration outputs have been used in the past but they are not considered suitable for the above purposes. Some EVM systems may also generate other outputs, suitable for such functions as engine vibration trend monitoring or trim balance calculation, but these are considered to be outside the scope of the requirements for a minimum system. This document also defines some recommended, optional, functions and features which, while they are outside the scope of minimum requirements, are nevertheless considered to be highly desirable for a practical system. It should be noted that systems incorporating capabilities such as described above are also sometimes referred to by the abbreviation AVM. However, there are, or can be, airborne measurements taken of vibrations from sources other than the engines. For the purpose of this document the more descriptive term, engine vibration monitor (EVM), will be used. The purpose of this document is to provide guidance on the requirements for airborne EVM systems for turbojet engines on transport category airplanes.
Rationale: This SAE Aerospace Standard (AS) provides guidelines for the functional, performance, qualification and acceptance testing, and documentation requirements for the components of an airborne engine vibration monitoring (EVM) system which is intended for use as a turbojet engine rotor unbalance indicating system, per FAR 25.1305 (D)(3) on transport category airplanes. For the purpose of this document, this means a system which can provide real-time flight deck displays of engine vibration caused by rotor unbalance, throughout the flight envelope, which are suitable for: a. relating to engine vibration limits (where such limits are specified), b. use in ice shedding procedures, and c. helping the flight crew to determine which engine has the higher level of vibration, following an engine damage event. As a minimum, the functional capability for such a system shall include the ability to compute and display vibration levels specifically related to the rotational speed(s) of the engine rotor(s). Systems which can produce only broadband vibration outputs have been used in the past but they are not considered suitable for the above purposes. Some EVM systems may also generate other outputs, suitable for such functions as engine vibration trend monitoring or trim balance calculation, but these are considered to be outside the scope of the requirements for a minimum system. This document also defines some recommended, optional, functions and features which, while they are outside the scope of minimum requirements, are nevertheless considered to be highly desirable for a practical system. It should be noted that systems incorporating capabilities such as described above are also sometimes referred to by the abbreviation AVM. However, there are, or can be, airborne measurements taken of vibrations from sources other than the engines. For the purpose of this document the more descriptive term, engine vibration monitor (EVM), will be used. The purpose of this document is to provide guidance on the requirements for airborne EVM systems for turbojet engines on transport category airplanes.
【英文标准名称】:AEROSPACE.MJTHREADS.PART3:LIMITDIMENSIONSFORFITTINGSFORFLUIDSYSTEMS.
【原文标准名称】:航空航天.MJ螺纹.第3部分:流体系统连接件极限尺寸
【标准号】:NFL05-230-3-1990
【标准状态】:现行
【国别】:法国
【发布日期】:1990-03
【实施或试行日期】:1990-02-20
【发布单位】:法国标准化协会(AFNOR)
【起草单位】:
【标准类型】:()
【标准水平】:()
【中文主题词】:航空工业;管道工程系统;燃气管路;航空运输;直径;尺寸公差;尺寸;液压管路;螺纹;配件
【英文主题词】:
【摘要】:
【中国标准分类号】:V04
【国际标准分类号】:49_030_10
【页数】:6P;A4
【正文语种】:其他


基本信息
标准名称:远动设备及系统 第1-1部分:总则 基本原则
英文名称:Telecontrol equipment and systems-Part 1-1:General considerations-General principles
中标分类:
ICS分类: 电气工程 >> 电灯及有关装置 >> 电灯综合
发布部门:中华人民共和国国家发展和改革委员会
发布日期:2005-11-28
实施日期:2006-06-01
首发日期:
作废日期:
提出单位:中国电力企业联合会
归口单位:全国电力系统控制及其通信标准化技术委员会
起草单位:北京四方继保自动化有限责任公司
起草人:杨常府、何卫、刘佩娟
出版社:中国电力出版社
出版日期:2006-06-01
页数:18页
适用范围

本系列标准文件适用于远动设备及系统。远动设备及系统以串行比特编码进行数据传输,对广域分布的过程进行监视和控制。

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所属分类: 电气工程 电灯及有关装置 电灯综合