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Passive and Active Methods for Enhancing Water Quality of Service Reservoir

机译:被动和主动方法提高服务水库水质

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摘要

Knowledge of flow pattern and water age distributions in service reservoirs is of the utmost importance for ensuring water quality supplied to the customers. In this article, a balancing reservoir was first investigated as a benchmark case. Using the computational fluid dynamics (CFD) method coupled with dynamic meshes, the flow pattern and water age distributions in the reservoir were simulated under actual service conditions. The calculated flow pattern indicated the migration and evolution of flow recirculation regions in the reservoir, which would lead to nonuniform lateral and vertical distributions of the water age, and therefore residual chlorine concentration. A passive flow control method, by adjusting the original circular nozzles to elliptical nozzles, was explored to enhance the water quality. It was found that using elliptical nozzles could assist fluid mixing in the reservoir. The water in the modified reservoir with elliptical nozzles had 5% lower age values than those of the original. Next, bubble plumes were used as an active method to enhance the water quality in the balancing reservoir. It was found that bubble plumes could enhance the fluid mixing significantly in both the vertical and lateral directions. Consequently, the modified reservoir with bubble plumes had 10% lower age values than those of the original reservoir. Therefore, the use of bubble plumes is suggested to be a viable approach for enhancing the water quality in a balancing reservoir, which is deemed to be novel in this field.
机译:了解服务水库中的水流模式和水龄分布对于确保向用户提供水质至关重要。在本文中,首先研究了一个平衡水箱作为基准案例。利用计算流体动力学(CFD)方法结合动态网格,模拟了实际使用条件下水库的流场和水龄分布。计算得出的水流模式表明了水库中水流再循环区域的迁移和演化,这将导致水龄的横向和垂直分布不均匀,从而导致残余氯浓度。通过将原始圆形喷嘴调整为椭圆形喷嘴,研究了一种被动流量控制方法,以提高水质。已经发现,使用椭圆形喷嘴可以帮助储层中的流体混合。带有椭圆喷嘴的改进型水库的水龄比原来的低5%。接下来,气泡羽被用作提高平衡水箱中水质的有效方法。发现气泡羽流可以在垂直和横向两个方向上显着增强流体混合。因此,带有气泡羽流的改进型储层的寿命值比原始储层的寿命值低10%。因此,建议使用气泡羽流是增强平衡水箱中水质的可行方法,这在该领域中被认为是新颖的。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2013年第7期|745-753|共9页
  • 作者单位

    Cardiac Mechanics Engineering and Physiology Unit, National Heart Centre Singapore, Mistri Wing 17, 3rd Hospital Ave., Singapore 168752;

    Dept. of Mechanical Engineering, National Univ. of Singapore, 1 Engineering Dr. 2, Singapore 117576.;

    Water Supply (Network) Dept., Public Utilities Board, 40 Scotts Rd., Environment Building, #10-01, Singapore 228231;

    Water Supply (Network) Dept., Public Utilities Board, 40 Scotts Rd., Environment Building, #10-01, Singapore 228231;

    Water Supply (Network) Dept., Public Utilities Board, 40 Scotts Rd., Environment Building, #10-01, Singapore 228231;

    Cardiac Mechanics Engineering and Physiology Unit, National Heart Centre Singapore, Mistri Wing 17, 3rdHospital Ave., Singapore 168752.;

    Dept. of Mechanical Engineering, National Univ. of Singapore, 1 Engineering Dr. 2, Singapore 117576;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Numerical analysis; Water; Mixing; Bubble; Elliptical nozzle; Mean age;

    机译:数值分析;水;混合;气泡;椭圆喷嘴平均年龄;

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