首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Investigation of Cycle Properties, Noise, and Air Pollutant Emissions of an APS3200 Auxiliary Power Unit
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Experimental Investigation of Cycle Properties, Noise, and Air Pollutant Emissions of an APS3200 Auxiliary Power Unit

机译:APS3200辅助动力装置的循环特性,噪声和空气污染物排放的实验研究

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摘要

Auxiliary power unit (APU) operators face increasingly stricter airport requirements concerning exhaust gas and noise emission levels. To simultaneously reduce exhaust gas and noise emissions and to satisfy the increasing demand of electric power on board, optimization of the current technology is necessary. Prior to any possible demonstration of optimization potential, detailed data of thermodynamic properties and emissions have to be determined. Therefore, the investigations presented in this paper were conducted at a full-scale APU of an operational aircraft. A Pratt & Whitney (East Hartford, CT) APS3200, commonly installed in the Airbus A320 aircraft family, was used for measurements of the reference data. In order to describe the APS3200, the full spectrum of feasible power load and bleed air mass flow combinations were adjusted during the study. Their effect on different thermodynamic and performance properties, such as exhaust gas temperature, pressure as well as electric and overall efficiency is described. Furthermore, the mass flows of the inlet air, exhaust gas, and fuel input were determined. Additionally, the work reports the exhaust gas emissions regarding the species CO 2 , CO, and NO x as a function of load point. Moreover, the acoustic noise emissions are presented and discussed. With the provided data, the paper serves as a database for validating numerical simulations and provides a baseline for current APU technology.
机译:辅助动力装置(APU)运营商面临有关废气和噪声排放水平的日益严格的机场要求。为了同时减少废气和噪声排放并满足船上不断增长的电力需求,必须对当前技术进行优化。在对优化潜力进行任何可能的证明之前,必须确定热力学性质和排放的详细数据。因此,本文介绍的调查是在一架作战飞机的全尺寸APU上进行的。通常安装在空中客车A320飞机系列中的普惠公司APS3200(用于康涅狄格州东哈特福德)用于测量参考数据。为了描述APS3200,在研究过程中调整了可行功率负载和引气质量流量组合的整个范围。描述了它们对不同的热力学和性能特性的影响,例如废气温度,压力以及电效率和总效率。此外,确定了进气,废气和燃料输入的质量流量。此外,该工作报告了与物种CO 2 ,CO和NO x 有关的废气排放与负荷点的关系。此外,提出并讨论了声噪声发射。利用所提供的数据,本文可作为验证数值模拟的数据库,并为当前的APU技术提供基准。

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