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Investigation on variable flow control in existing water-cooled chiller plant of high-rise commercial building in subtropical climate

机译:亚热带气候中高层商业建筑现有水冷式冷水机组变流量控制的研究

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An all-variable-speed chiller plant has been advocated so that the chillers and their associated pumps can work at reduced speed during part-load conditions for energy saving purposes. In this new building project, the savings merit is certainly attractive. However, an existing chiller plant or retrofit project, which is constrained by the performance of installed equipment and the configuration of a hydronic circuit, may not benefit from the an ideal extent of savings. As such, an existing chiller plant serving a typical commercial building was used to evaluate this. Through year-round dynamic simulation, it is found that there were about 5%, 6%, and 8% energy savings of the whole chiller plant when applying variable flow control on secondary chilled water pumps only, both primary and secondary chilled water pumps, and all chilled and condenser water pumps, respectively. If constant-speed centrifugal chillers were substituted by the variable-speed ones, an additional 4% savings could be achieved, which was, however, less than that incurred from the associated pumps. The payback periods of different variable flow control strategies were well below 1 year, indicating the techno-economical feasibility for wider application in existing chiller plants in subtropical climates.
机译:为了提倡节能,已经提倡使用全速冷水机组,以使冷水机组及其相关的泵在部分负荷条件下可以降低转速工作。在这个新建筑项目中,节省的优点无疑是吸引人的。但是,现有的冷水机组或改造项目受到安装设备的性能和水力循环回路的配置的限制,可能无法从理想的节省程度中受益。因此,现有的为典型商业建筑服务的冷水机组被用来评估这一点。通过全年的动态模拟,发现仅对次级冷水泵,初级冷水泵和次级冷水泵应用可变流量控制时,整个冷水机组的节能量分别约为5%,6%和8%。以及所有冷冻水泵和冷凝器水泵。如果将恒速离心式制冷机替换为变速离心式制冷机,则可额外节省4%的费用,但是,这比相关泵的节省额要少。不同可变流量控制策略的投资回收期都远低于1年,这表明在亚热带气候中将其广泛应用于现有冷水机组的技术经济可行性。

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