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Coordinated optimization of the variable refrigerant flow and variable air volume combined air-conditioning system in heating conditions

机译:加热条件下可变制冷剂流量和可变风量组合空调系统的协调优化

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摘要

Although variable refrigerant flow systems have become attractive due to good energy performance in part-load conditions, the shortcoming of the variable refrigerant flow system in outdoor air ventilation has not been well solved. A variable refrigerant flow and variable air volume combined air-conditioning system was proposed to solve this problem. The variable air volume part of the combined system consists of an outdoor air processing unit and air supply and distribution devices. The combined system was found having potential to obtain high-level energy efficiency without compromising thermal comfort by an intelligent control system. Therefore, a so-called global coordinated optimization strategy based on a local coordinated optimization strategy is proposed in this study. The local coordinated optimization strategy decreases energy consumption of the combined system through optimizing load allocation between the variable refrigerant flow unit and the outdoor air processing unit. The global coordinated optimization strategy has a much deeper coordination of the variable refrigerant flow and outdoor air processing units, as it combines the local coordinated optimization strategy with stopping and restarting of the outdoor air processing unit. Performances of the combined system in heating conditions under this strategy are evaluated in the simulation platform. Results show that the global coordinated optimization strategy can effectively reduce the energy consumption of the combined system.
机译:尽管可变制冷剂流量系统由于在部分负载条件下的良好能量性能而变得有吸引力,但是尚未很好地解决可变制冷剂流量系统在室外空气通风中的缺点。为了解决这个问题,提出了一种可变制冷剂流量和可变风量的组合空调系统。组合系统的可变风量部分包括室外空气处理单元和空气供应和分配装置。发现该组合系统具有在不损害智能控制系统热舒适性的情况下获得高水平能源效率的潜力。因此,本研究提出了一种基于局部协同优化策略的全局协同优化策略。局部协调优化策略通过优化可变制冷剂流量单元和室外空气处理单元之间的负载分配来减少组合系统的能耗。全局协调优化策略对可变制冷剂流量和室外空气处理单元具有更深的协调,因为它将局部协调优化策略与室外空气处理单元的停止和重新启动相结合。在模拟平台上评估了该策略下组合系统在加热条件下的性能。结果表明,全局协调优化策略可以有效降低组合系统的能耗。

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