应用于城市客车空调的蒸发冷却器系统的研制

César Ramos Broliato, C. Altafini, Carlos Alberto Costa
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摘要

公交车空调是公共交通的重要激励工具,因为它为乘客提供了舒适,刺激了这种交通工具的使用,这是改善城市流动性的基础。目前,客车空调设备为机械蒸汽压缩(MVC)型。然而,这种系统有两个主要缺点:高昂的财务成本和汽车发动机的功率消耗。本研究的目的是为公共汽车开发一种蒸发冷却器,这是一种简单,环保,低成本的解决方案,不使用发动机动力。第一步是设计和建造原型。接下来的步骤是通过执行实验测试来评估构建的原型。原型机的饱和效率约为70%,风量为421.5 m³/h,能耗为98.4 W。在确定原型技术特性后,为城市公交车开发了蒸发冷却系统,寻求满足ANSI/ASHRAE标准62.1的空气更新要求,并提高ISO 7730和ANSI/ASHRAE标准55规定的乘客热舒适性。通过PMV-PPD指标对新冷却系统的热舒适性进行了评价。PMV指数为0.35,PPD指数为7,表明在既定的环境条件下,约93%的乘客对其热舒适感到满意。蒸发冷却系统的总能耗约为0.4 kW,仅占MVC系统能耗的5%。因此,蒸发冷却的性能取决于环境的气候条件,特别是湿度。然而,当应用于有利条件(低湿度)时,蒸发冷却系统被证明是替代MVC系统在客车空调应用中的可行方案,其主要优势是其积极的成本效益和节能。
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Development of an evaporative cooler system applied to the air conditioning of urban buses
Air conditioning for buses is an important incentive tool for the public transport, since it offers comfort to passengers and stimulates the use of this kind of transport which is fundamental to improve urban mobility. Currently, air conditioning equipment for buses is the mechanical vapor compression (MVC) type. However, this kind of system has two main disadvantages: the high financial cost and power consumption by the vehicle engine. The purpose of this study is to develop an evaporative cooler for buses, which is a simple, environmental friendly, low-cost solution that does not use engine power for its operation. The first step was the design and construction of the prototype. The following step was to evaluate the built prototype through performing experimental tests. The prototype presented a saturation efficiency of approximately 70%, airflow rate of 421.5 m³/h and energy consumption of 98.4 W. After determining the prototype technical characteristics, the evaporative cooling system was developed for an urban bus, seeking to meet the air renewal required by ANSI/ASHRAE standard 62.1 and to promote the passenger’s thermal comfort as specified by ISO 7730 and ANSI/ASHRAE Standard 55. The thermal comfort provided by the new cooling system was evaluated through the PMV-PPD indexes. A value of 0.35 was obtained for the PMV index and the PPD index obtained a value of 7, indicating that approximately 93% of the passengers will be satisfied regarding their thermal comfort for the established environmental conditions. The evaporative cooling system had a total energy consumption of approximately 0.4 kW, which represents only 5% of the energy that would be consumed by a MVC system. Therefore, the evaporative cooling performance depends on the climatic conditions of the environment, especially humidity. However, when applied in favorable conditions (low humidity), the evaporative cooling system proved to be a viable solution to replace the MVC systems in buses air-conditioning application, where its main advantage is its positive cost-benefit and energy savings.
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