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Determination of the ejector dimensions of a bus air-conditioning system using analytical and numerical methods

机译:使用分析和数值方法确定公交空调系统的喷射器尺寸

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Comfortable journey with commercial buses is an essential goal of transportation companies. An air-conditioning system can play an important role for this comfortable journey but it can put extra load on the engine and extra cost in the fuel consumption. The purpose of this work is to increase the performance of air-conditioning system of the buses by reducing the load on the engine and fuel consumption. Using a two-phase ejector as an expansion valve can increase the coefficient of performance (COP) of the air-conditioning system. An improvement in the COP can reduce the empty vehicle weight and fuel consumption of buses. Two-phase ejector dimensions can be determined using the empirical methods available in the literature. In this paper, the two-phase ejector dimensions of air conditioning system for a bus are calculated using the analytical and numerical methods. First of all, the thermodynamic analysis of the vapor-compression refrigeration cycle with a two-phase ejector is performed, and then the ejector dimensions are subsequently determined. The cooling loads of the midibus and bus with R134a as a refrigerant are assumed to be 14 kW and 32 kW, respectively. The total length of the two-phase ejector for the midibuses and buses due to these cooling loads, are computed to be 480.8 mm and 793.1 mm, respectively. Also, an experimental setup is installed on a midibus air conditioner to turn it into the ejector air conditioning system to validate theoretical results with the experimental study. (C) 2015 Elsevier Ltd. All rights reserved.
机译:乘坐商务巴士舒适地旅行是运输公司的基本目标。空调系统在这种舒适的旅程中可以发挥重要作用,但它可能给发动机增加负担,并增加油耗。这项工作的目的是通过减少发动机的负荷和燃油消耗来提高公共汽车的空调系统的性能。使用两相喷射器作为膨胀阀可以增加空调系统的性能系数(COP)。 COP的改进可以减少空车重量和公共汽车的燃料消耗。可以使用文献中提供的经验方法确定两相喷射器的尺寸。本文利用解析和数值方法计算了客车空调系统的两相喷射器尺寸。首先,利用两相喷射器对蒸气压缩式制冷循环进行热力学分析,然后确定喷射器尺寸。假设R134a为制冷剂的公交车和公共汽车的冷却负荷分别为14 kW和32 kW。由于这些冷却负荷,用于中枢和总线的两相喷射器的总长度分别计算为480.8 mm和793.1 mm。另外,在Midibus空调器上安装了实验装置,将其转​​变为喷射器空调系统,以验证实验研究的理论结果。 (C)2015 Elsevier Ltd.保留所有权利。

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