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首页> 外文期刊>Aquacultural Engineering: An International Journal >Design methodology for the swirl separator.
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Design methodology for the swirl separator.

机译:旋流分离器的设计方法。

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摘要

A methodology is proposed for designing the swirl separators that are commonly used for removing waste solids in recirculating aquaculture systems. The size of the swirl separator is calculated based on the desired solids removal efficiency and the water flow rate to be treated. The approach was validated by performing experiments on swirl separators with diameters of 0.6 and 1.5 m and by carrying out CFD simulations. Results show that tank height and the position of the inlet have a minor influence on separation performance compared to outlet geometry, inlet diameter and tank diameter. It is also shown that solids separation is mainly due to gravity rather than centrifugal forces. Separation follows closely the theory of sedimentation in well-mixed systems and can be predicted using a simple analytical model. The swirl flow generates relatively strong horizontal mixing but relatively weak axial mixing. As a result, particles are uniformly distributed across the tank, and separation is mainly by sedimentation. The settling velocity of the particles was accurately predicted by a new correlation that takes particle shape into account.
机译:提出了一种用于设计旋流分离器的方法,该旋流分离器通常用于去除循环水产养殖系统中的废物固体。涡流分离器的尺寸是根据所需的固体去除效率和要处理的水流量计算的。通过在直径分别为0.6和1.5 m的旋流分离器上进行实验并进行CFD模拟,验证了该方法的有效性。结果表明,与出口几何形状,进口直径和罐直径相比,罐的高度和进口位置对分离性能的影响较小。还显示出固体分离主要是由于重力而不是离心力。分离严格遵循充分混合系统中的沉降理论,可以使用简单的分析模型进行预测。旋流产生相对强的水平混合,但产生相对弱的轴向混合。结果,颗粒均匀地分布在整个罐中,并且分离主要是通过沉淀。通过考虑颗粒形状的新相关性,可以精确地预测颗粒的沉降速度。

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