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SAE J2082 Cooling Flow Measurement Techniques

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Product Code:SAE J2082
Title:Cooling Flow Measurement Techniques
Issuing Committee:Road Vehicle Aerodynamics Forum Committee
Scope: This SAE Information Report has been prepared by the Standards Committee on cooling flow measurement (CFM) at the request of the SAE Road Vehicle Aerodynamics Forum Committee (RVAC). The committee was formed in January 1985 for the purpose of investigating what measuring techniques are used by automotive product manufacturers to determine air cooling air flow rates and, if possible, to synthesize these into a recommended practice report. Although a great deal is already known about engine cooling, recent concern with fuel conservation has resulted in generally smaller air intakes whose shape and location are dictated primarily by low vehicle drag/high forward speed requirements. The new vehicle intake configurations make it more difficult to achieve adequate cooling under all conditions. They cause cooling flow velocity profiles to become distorted and underhood temperatures to be excessively high. Such problems make it necessary to achieve much better accuracy in measuring cooling flows. As the following descriptions show, each company or institution concerned with this problem has invested a lot of time and as a result gained considerable experience in developing measuring techniques that appear to achieve reliable results. There is however, little uniformity at the present time among the methods used by different companies and no indication at this time of a trend towards a simple and universally acceptable measuring technique. If one can make generalizations, it seems that the North American industry appears to use vane anemometers, whereas the European industry appears to favor pressure measurements for determining cooling air flows. Usually cooling flow measurement makes use of ensemble average calibrations of arrayed sensors. The major drawback of ensemble averaging usage of sensors appears to be the need for prior calibration of each combination of sensor array and radiator/vehicle front-end configuration. While there appears to be a growing interest in also knowing flow distributions--which necessitates the use of a plurality of sensing devices--very little is made of area-averaging techniques. Given the present state of the technology, this report covers simply an overview of the different measuring techniques deployed in the industry, and it is left to the future to report on developments towards a unified cooling flow measurement method. Appendices A and B present a number of problem statements that were identified during the present CFM review and whose solution would promote a better understanding of cooling flow measurement generally.
Rationale: This SAE Information Report has been prepared by the Standards Committee on cooling flow measurement (CFM) at the request of the SAE Road Vehicle Aerodynamics Forum Committee (RVAC). The committee was formed in January 1985 for the purpose of investigating what measuring techniques are used by automotive product manufacturers to determine air cooling air flow rates and, if possible, to synthesize these into a recommended practice report. Although a great deal is already known about engine cooling, recent concern with fuel conservation has resulted in generally smaller air intakes whose shape and location are dictated primarily by low vehicle drag/high forward speed requirements. The new vehicle intake configurations make it more difficult to achieve adequate cooling under all conditions. They cause cooling flow velocity profiles to become distorted and underhood temperatures to be excessively high. Such problems make it necessary to achieve much better accuracy in measuring cooling flows. As the following descriptions show, each company or institution concerned with this problem has invested a lot of time and as a result gained considerable experience in developing measuring techniques that appear to achieve reliable results. There is however, little uniformity at the present time among the methods used by different companies and no indication at this time of a trend towards a simple and universally acceptable measuring technique. If one can make generalizations, it seems that the North American industry appears to use vane anemometers, whereas the European industry appears to favor pressure measurements for determining cooling air flows. Usually cooling flow measurement makes use of ensemble average calibrations of arrayed sensors. The major drawback of ensemble averaging usage of sensors appears to be the need for prior calibration of each combination of sensor array and radiator/vehicle front-end configuration. While there appears to be a growing interest in also knowing flow distributions--which necessitates the use of a plurality of sensing devices--very little is made of area-averaging techniques. Given the present state of the technology, this report covers simply an overview of the different measuring techniques deployed in the industry, and it is left to the future to report on developments towards a unified cooling flow measurement method. Appendices A and B present a number of problem statements that were identified during the present CFM review and whose solution would promote a better understanding of cooling flow measurement generally.
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基本信息
标准名称:检查铁合金取样和制样偏差的试验方法
英文名称:Ferroalloys-Experimental methods for checking the bias of sampling and sample preparation
中标分类: 冶金 >> 钢铁产品 >> 铁合金
ICS分类: 冶金 >> 铁合金
发布部门:国家质量技术监督局
发布日期:2000-10-25
实施日期:2001-09-01
首发日期:2000-10-25
作废日期:1900-01-01
主管部门:中国钢铁工业协会
归口单位:全国钢标准化技术委员会
起草单位:吉林铁合金集团有限责任公司
出版社:中国标准出版社
出版日期:2004-04-17
页数:16页
书号:155066.1-17471
适用范围

本标准规定了检查铁合金取样偏差的试验方法的一般要求、试验方法、数据分析和试验结果评定。本标准规定的试验方法适用于检查有关的标准中规定的铁合金取样和制样方法与仲裁方法之间的偏差或其他两种方法之间的偏差。

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所属分类: 冶金 钢铁产品 铁合金 冶金 铁合金
【英文标准名称】:SpecificationforAlloy-SteelTurbine-TypeBoltingMaterialSpeciallyHeatTreatedforHigh-TemperatureServiceASTMA437/A437M-99
【原文标准名称】:经特殊处理的高温用涡轮型合金钢螺栓材料规范.ASTMA437/A437M-99
【标准号】:ASMESECIIASA-437/SA-437M-2001
【标准状态】:现行
【国别】:美国
【发布日期】:2001-07-01
【实施或试行日期】:
【发布单位】:美国机械工程师协会(US-ASME)
【起草单位】:
【标准类型】:()
【标准水平】:()
【中文主题词】:
【英文主题词】:
【摘要】:BoilerandPressureVessel,SpecificationforAlloy-SteelTurbine-TypeBoltingMaterialSpeciallyHeatTreatedforHigh-TemperatureServiceASTMA437/A437M-99
【中国标准分类号】:J13
【国际标准分类号】:
【页数】:
【正文语种】:英语