利用物理和数值模型评估漩涡式流体动力分离器的性能。

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Water Science and Technology Pub Date : 2024-07-01 Epub Date: 2024-06-15 DOI:10.2166/wst.2024.207
Zhexin Weng, Yu Qian, David Z Zhu, Seith N Mugume
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引用次数: 0

摘要

水动力分离器通常用于控制雨水排放到自然水体前的总悬浮固体浓度。本文研究的分离器由切线入口和出口连接产生漩涡流,分析了分离器去除沉积物的效率与沉积物和流速的关系。对于本文研究的分离器,数值模型显示,流场有利于沉积物聚集在中心并沉降。流速越高或沉积物直径越小,去除率就越低,反之亦然。此外,还对提高沉积物去除率的尺寸改进进行了研究。结果发现,与分离器高度的相应增加相比,分离器直径的增加显示出更高的沉积物去除率。提出了一个无量纲参数 J 来评估分离器的沉积物去除率,该参数可用于设计和优化此类设备。去除率与 J 值呈正相关。当 J 值达到 0.5 或以上时,沉积物去除率超过 80%,这是设计此类分离器的良好初始目标值。
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Evaluation on the performance of a swirling-type hydrodynamic separator using physical and numerical models.

Hydrodynamic separators are commonly used to control the total suspended solid concentration in stormwater before being discharged to natural water bodies. The separator studied in this paper, featuring a swirling flow generated by tangential inlet and outlet connections, was analyzed for its sediment removal efficiency in relation to sediment and flow rates. For the separator studied in this paper, the numerical model showed that the flow field was favorable for the sediments to gather at the center and settle. A higher flow rate or a smaller sediment diameter corresponded to a lower removal rate and vice versa. The dimension improvement for increasing the sediment removal rate was also studied. It was found that increasing the diameter of the separator showed a higher sediment removal rate compared with corresponding increase in the height of the separator. A dimensionless parameter J was proposed to assess the sediment removal rate of a separator, which may be used for designing and optimizing such a device. The removal rate is positively correlated with the J value. When the J value reaches 0.5 or above, the sediment removal rate exceeds 80%, which is a good initial target value for designing this type of separator.

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来源期刊
Water Science and Technology
Water Science and Technology 环境科学-工程:环境
CiteScore
4.90
自引率
3.70%
发文量
366
审稿时长
4.4 months
期刊介绍: Water Science and Technology publishes peer-reviewed papers on all aspects of the science and technology of water and wastewater. Papers are selected by a rigorous peer review procedure with the aim of rapid and wide dissemination of research results, development and application of new techniques, and related managerial and policy issues. Scientists, engineers, consultants, managers and policy-makers will find this journal essential as a permanent record of progress of research activities and their practical applications.
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