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Enhancing the performance of large primary-secondary chilled water systems by using bypass check valve

机译:通过使用旁通止回阀提高大型一次-二次冷冻水系统的性能

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Large primary-secondary chilled water systems often suffer from low chilled water temperature difference (i.e., known as low delta-T central plant syndrome) during operation. This paper presents a detailed study to investigate the feasibility and potential benefits related to the use of a bypass check valve in the chiller decouple line to solve this operational problem and hence, to improve the overall system operating efficiency. The objective of this study is to provide some guidance and necessary confidence as well as the awareness of potential problems that may arise when a bypass check valve is considered to handle the low delta-T syndrome. Based on testing the effects of the low delta-T syndrome, the performances of the systems with and without the bypass check valve are then evaluated by using a simulated virtual system. In the tests, the low delta-T syndrome was introduced through air-side fouling by changing the air-side thermal resistance coefficient in the cooling coil model. The results show that, if the chilled water system suffered from 20% air-side fouling, about 6.77% total energy of the chilled water system studied can be saved when a bypass check valve is used, as compared to that without the bypass check valve.
机译:大型一次-二次冷冻水系统在运行期间通常会遭受较低的冷冻水温差(即称为低δ-T中央植物综合症)的困扰。本文提出了一项详细的研究,以调查与在制冷机解耦管线中使用旁路止回阀相关的可行性和潜在收益,以解决此运行问题,从而提高整体系统的运行效率。这项研究的目的是提供一些指导和必要的信心,以及对当使用旁路止回阀来处理低ΔT综合症时可能出现的潜在问题的认识。在测试低delta-T综合症的影响的基础上,然后使用模拟虚拟系统评估带有和不带有旁通止回阀的系统的性能。在测试中,通过更改冷却盘管模型中的空气侧热阻系数,通过空气侧污垢引入了低delta-T综合症。结果表明,如果冷冻水系统遭受20%的空气侧污染,与不使用旁路止回阀的情况相比,使用旁路止回阀可以节省大约6.77%的研究冷冻水系统总能量。 。

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