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Effects of pumping station configuration on the energy performance of district cooling systems

机译:泵站配置对区域供冷系统能源性能的影响

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In this paper, a hypothetical district representing the typical urban districts in Hong Kong was considered and a district cooling system model was designed for this district. Mathematical models were tailor-designed for all the major district cooling system equipment to simulate the effects of changing the pumping station's configuration on the energy performance of the district cooling system. The measures included the use of multiple pumping stations and an unequal number of pumps in each station. In view of the vast number of pumping station combinations possible for analysis, a hydraulic gradient evaluation method was adopted to assist a quick assessment and exploration of those combinations that would be technically feasible. Furthermore, the energy performance of all these technically feasible combinations was evaluated to identify an optimum design that would lead to the lowest electricity consumption. Practical application: In a district cooling system where there is only one main pumping station for distributing chilled water to all the buildings in the district, the chilled water flow rate and pressure head are very high. Adding booster pumping stations can help to reduce pressure head, pump size and hence power demand of the main pumping station. In this paper, the effects of different pumping station configurations on the energy performance of a district cooling system were investigated. The configuration that could mitigate the impacts of a low delta-Ton the energy performance of the district cooling system was also identified.
机译:本文考虑了代表香港典型市区的假设区域,并为此区域设计了区域冷却系统模型。针对所有主要的区域供冷系统设备量身定制了数学模型,以模拟更改泵站配置对区域供冷系统的能源性能的影响。措施包括使用多个泵站,每个站中泵的数量不相等。鉴于有大量的泵站组合可用于分析,因此采用了液压梯度评估方法来帮助快速评估和探索在技术上可行的那些组合。此外,对所有这些在技术上可行的组合的能源性能进行了评估,以确定可导致最低耗电量的最佳设计。实际应用:在一个区域冷却系统中,该系统只有一个主泵站用于向该区域的所有建筑物分配冷水,因此冷水流量和压头非常高。增加增压泵站可以帮助减小压头,减小泵的尺寸,从而减少主泵站的功率需求。在本文中,研究了不同泵站配置对区域供冷系统能源性能的影响。还确定了可以减轻低增量制冷量(Ton)的影响的配置。

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