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A finite velocity simulation of sedimentation behaviour of flocculating particles - a real-time model evaluation

机译:絮凝颗粒沉降行为的有限速度模拟 - 实时模型评价

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摘要

A mechanistic velocity model is developed to simulate the behaviour of flocculating colloidal particles in turbid water. The current model is based on one-dimensional mass transport in the vertical direction as an integrated form of the model derived by Ramatsoma and Chirwa. The percentile removal model achieved more accurate simulation of physical experimental data than known models such as the Ozer’s model and San’s model. In this study, an integrated velocity form was used to estimate flocculent settling velocity of fine suspended particles under near quiescent conditions. Model closeness to experimental measurements was determined as a function of the sum of squares error (SSE) between model data and experimental data. The proposed velocity model offers a distinctive advantage over the interpolated-isopercentile based models which are prone to numerical errors during interpolation. The results contribute towards the ultimate goal of achieving full automation of the design of gravitational particle separation devices for water and wastewater treatment.
机译:建立了一个机械速度模型来模拟混浊水中胶体颗粒的絮凝行为。当前模型基于垂直方向的一维传质,是Ramatsoma和Chirwa推导的模型的集成形式。与已知的模型(例如Ozer模型和San模型)相比,百分位数去除模型可以更精确地模拟物理实验数据。在这项研究中,使用积分速度形式来估算在接近静止状态下细悬浮颗粒的絮凝沉降速度。确定模型与实验测量值的接近度是模型数据与实验数据之间的平方误差总和(SSE)的函数。所提出的速度模型提供了优于基于插值等距模型的独特优势,后者在插值过程中容易出现数值误差。结果有助于实现用于水和废水处理的重力颗粒分离装置的设计完全自动化的最终目标。

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