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首页> 外文期刊>Journal of water and health >Computational fluid dynamics analysis of the hydraulic (filtration) efficiency of a residential swimming pool
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Computational fluid dynamics analysis of the hydraulic (filtration) efficiency of a residential swimming pool

机译:住宅游泳池水力(过滤)效率的计算流体动力学分析

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Hydraulic or filtration efficiency of residential swimming pools, quantified in terms of residence time characteristics, is critical to disinfection and thus important to public health. In this study, a three-dimensional computational fluid dynamics model together with Eulerian and Lagrangian-based techniques are used for investigating the residence time characteristics of a passive tracer and particles in the water, representative of chemicals and pathogens, respectively. The flow pattern in the pool is found to be characterized by dead zone regions where water constituents may be retained for extended periods of times, thereby potentially decreasing the pool hydraulic efficiency. Two return-jet configurations are studied in order to understand the effect of return-jet location and intensity on the hydraulic efficiency of the pool. A two-jet configuration is found to perform on par with a three-jet configuration in removing dissolved constituents but the former is more efficient than the latter in removing or flushing particles. The latter result suggests that return-jet location and associated flow circulation pattern have an important impact on hydraulic efficiency. Thus return-jet configuration should be incorporated as a key parameter in the design of swimming pools complementing current design standards.
机译:根据停留时间特性量化的住宅游泳池的水力或过滤效率对消毒至关重要,因此对公共卫生也很重要。在这项研究中,三维计算流体动力学模型与基于欧拉和拉格朗日的技术一起用于研究被动示踪剂和颗粒在水中的停留时间特性,分别代表化学物质和病原体。发现水池中的水流特征在于死区区域,在死区区域中水成分可能会保留很长时间,从而可能降低水池的水力效率。为了了解回流位置和强度对水池水力效率的影响,研究了两种回流构造。发现在去除溶解的成分方面,两喷嘴构造与三喷嘴构造相当,但是前者在去除或冲洗颗粒方面比后者更有效。后一个结果表明,回喷口的位置和相关的流动循环方式对水力效率有重要影响。因此,回水喷射配置应作为游泳池设计的关键参数,以补充当前的设计标准。

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