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A Review of Vortex Grit Basin Design

机译:涡旋砂砾盆设计综述

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摘要

Due to the challenges associated with sampling, and the low priority often bestowed on grit removal, good data on grit removal in vortex grit basins is surprisingly rare. A review of experimental and full scale plant results, mathematical models and CFD model results were undertaken with the goal of identifying a common separating mechanism in vortex grit basins. Finding such a mechanism would lead to a mathematical model or equation that can be used for the design of vortex grit basins. Analysis of grit basins show that centrifugal forces are negligible and intricate flow patterns do not exist. Sedimentation under the influence of gravity is the main mechanism for grit removal in vortex grit basins. CFD modeling and the available data support this conclusion. Due to the high tangential velocity introduced by the influent flow, some allowance must be made to accommodate the resulting turbulence. Some mathematical models include such allowance, but the allowance has not been fully quantified. This is a key requirement for future research. CFD modeling is a tool that would allow for optimization of grit basin design, particularly for those parameters, such as outlet configuration, that cannot be easily included in a mathematical analysis. Suggestions are provided for other parameters that form part of vortex grit basin design.
机译:由于与采样相关的挑战,并且较低的优先级经常赋予砂砾去除,涡旋砂砾盆中的砂砾去除的良好数据令人惊讶。对实验和全规模植物结果,数学模型和CFD模型结果进行了综述,其目的是识别涡流砂砾盆中的常见分离机制。找到这样的机制将导致数学模型或等式可用于涡旋砂砾盆地的设计。砂砾盆地的分析表明离心力可以忽略不计,并且不存在复杂的流动模式。重力影响下的沉降是涡旋砂砾盆中砂砾去除的主要机制。 CFD建模和可用数据支持此结论。由于流入流动引入的高切向速度,必须使一些允许物能适应所产生的湍流。一些数学模型包括这样的余量,但余量尚未完全量化。这是未来研究的关键要求。 CFD建模是一种工具,可以允许优化砂砾盆设计,特别是对于那些不能容易地包括在数学分析中的那些参数,例如出口配置。为形成涡旋砂池盆设计的一部分的其他参数提供了建议。

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