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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance enhancement of a complex chilled water system using a check valve: Experimental validation
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Performance enhancement of a complex chilled water system using a check valve: Experimental validation

机译:使用止回阀提高复杂冷冻水系统的性能:实验验证

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摘要

The large primary-secondary chilled water systems often suffer from the excess flow demand and low chilled water temperature difference, which is known as the low ΔT central plant syndrome, during operation. This paper presents an approach for experimental validation of the possible utility of a check valve (i.e., putting a one-direction check valve in the chilled water by-pass line) to solve this operational problem and enhance the overall system performance, prior to a check valve is really installed. The experimental tests were carried out on the complex central chiller plant in a super high-rise building using a simulated check valve through fully closing one of the butterfly valves in the by-pass line when the system operated with a significant excess flow demand and experienced the low ΔT syndrome. The results from the tests showed that the system operational performance can be improved when the simulated check valve was used. Compared to that without using the check valve, about 9.2% of the total energy of the chillers and secondary water pumps was saved in the test period when the simulated check valve was used.
机译:大型的一次-二次冷冻水系统在运行期间经常遭受流量需求过大和冷冻水温差低的问题,这被称为低ΔT中央电厂综合症。本文提出了一种通过实验验证单向阀的可能效用的方法(即,将单向单向阀放入冷冻水旁通管路中)来解决该操作问题并增强整个系统的性能,止回阀确实已安装。当系统运行时有明显的过剩流量需求并经历了严重的系统故障时,使用模拟止回阀通过完全关闭旁路管线中的一个蝶形阀,在超高层建筑中的复杂中央冷水机组上进行了实验测试。低ΔT综合征。测试结果表明,使用模拟止回阀可以改善系统的运行性能。与不使用止回阀的情况相比,在使用模拟止回阀的测试期间,可节省约9.2%的冷却器和二次水泵总能量。

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