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Development of Efficient Air Conditioning and Refrigeration System for Service Vehicles

机译:高效服务车空调制冷系统的开发

摘要

This research aims to develop a proof-of-concept demonstration of a high efficiency vehicle air conditioning and refrigeration (VACR) system to be employed in service vehicles. The work herein is part of a collaborative research project with two local companies: Cool-It Group, and Saputo Inc., with a main focus on service vehicles. Due to global energy consumption and the environmental impacts of air conditioning and refrigeration (A/C-R) systems, the development of a high efficiency system can significantly contribute to green and sustainable development and environmental protection. This research fills a gap in the literature by developing real-time thermal and performance characteristics of the VACR systems employed in the food transportation industry. Field data is acquired from pilot refrigerated service vehicles during different seasons of the year and the duty cycles are established. The acquisition of field data begins in stationary A/C-R systems and continues in mobile VACR systems. Moreover, a testbed is built in the Laboratory for Alternative Energy Conversion (LAEC) for more comprehensive experiments. Mathematical models are developed for thermal and performance simulations of VACR systems under steady state and transient operating conditions. The models are validated using the laboratory and field data and employed for a thermal and performance investigation of VACR systems. A proof-of-concept demonstration of high efficiency VACR systems is built in LAEC using variable speed compressor and fans and high efficiency heat exchangers. The modeling results are validated and used to develop an optimization model. The optimization model is validated and utilized to determine the optimum compressor and fans speeds for achievement of the highest coefficient of performance (COP) under real-time operating conditions. The optimization model is integrated with an existing cooling demand simulator to develop a proof-of-concept demonstration of a proactive and model predictive controller (MPC) for the VACR system. The controller is implemented on the laboratory-built VACR system and a proof-of-concept demonstration of high efficiency VACR is finalized. The developed concept and platform is expandable to the entire transportation industry as well as stationary A/C-R systems.
机译:这项研究的目的是开发用于服务车辆的高效车辆空调和制冷(VACR)系统的概念验证演示。本文的工作是与两家本地公司:Cool-It Group和Saputo Inc.的合作研究项目的一部分,主要专注于服务车辆。由于全球能源消耗以及空调和制冷(A / C-R)系统对环境的影响,高效系统的开发可以极大地促进绿色,可持续发展和环境保护。这项研究通过开发食品运输行业中使用的VACR系统的实时热和性能特征,填补了文献中的空白。在一年的不同季节从飞行员冷藏服务车中获取现场数据,并确定工作周期。现场数据的采集从固定式A / C-R系统开始,并在移动VACR系统中继续。此外,替代能源转换实验室(LAEC)内建有一个试验台,用于更全面的实验。开发了用于在稳态和瞬态运行条件下对VACR系统进行热和性能模拟的数学模型。该模型已使用实验室和现场数据进行了验证,并用于VACR系统的热性能研究。 LAEC使用变速压缩机和风扇以及高效热交换器构建了高效VACR系统的概念验证演示。对建模结果进行验证,并将其用于开发优化模型。优化模型经过验证并用于确定最佳压缩机和风扇转速,以在实时运行条件下实现最高性能系数(COP)。优化模型与现有的制冷需求模拟器集成在一起,以开发VACR系统的主动模型预测控制器(MPC)的概念验证演示。该控制器在实验室内置的VACR系统上实施,并且最终完成了高效VACR的概念验证演示。开发的概念和平台可扩展到整个运输行业以及固定式A / C-R系统。

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  • 作者

    Bagheri Farshid;

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  • 年度 2016
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