用拟牛顿迭代有限差分法建立了部分污水处理工艺中带式撇油器油膜流速的数学模型

Pantira Klankaew, Kaboon Thongtha, Siripawn H Winter, Pornchai Chaisanit, K. Kumnungkit, N. Pochai
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引用次数: 0

摘要

撇油器是一种有用的工具,可以从水面上回收各种漂浮的废油、油脂和脂肪。润滑油膜流速近似是撇油带调速中的一个重要问题。调节带速水平可达几种油型的物理参数。运动带式撇油器上润滑油膜的流动速度可以用非线性微分方程的边值问题来表示。该模型给出了润滑油膜在各厚度层中的流动速度。本文提出了一种以空间为中心的有限差分法和拟牛顿迭代法来逼近非线性润滑膜流动速度模型的解。研究了在不同物理参数条件下,薄润滑膜在运动撇油带上的流动速度的数值模拟。所提出的数值方法给出了与外力因子在不同运动带速度水平下的近似解。这些是有用的,然后实现最佳的皮带撇油器速度为每种润滑剂类型。
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A Mathematical Model of Lubricant Film Flow Velocity on a Belt Type Oil Skimmer in a Part of Wastewater Treatment Process Using a Finite Difference Method with Quasi-Newton Iterative Technique
Oil skimmer is a useful tool in recovering all types of floating waste oils, greases and fats from water surfaces. Lubricant film flow velocity approximation is an important problem of oil skimmer belt speed adjustment. The adjustment belt speed level is up to several physical parameters of oil types. A thin lubricant film flow velocity on a moving belt oil skimmer can be modeled in a form of a nonlinear differential equation as a boundary value problem. The model is providing the lubricant film flow velocity in each thickness layers. In this research, a centered in space finite difference method and a Quasi-Newton iterative method are proposed to approximate the solutions of the nonlinear thin lubricant film flow velocity model. Their numerical simulations of a thin lubricant film flow velocity on a moving oil skimmer belt with varied physical parameters are investigated. The proposed numerical techniques give good agreement approximated solutions in several moving belts speed levels with the external force factor. These are then useful to achieve the optimum belt oil skimmer speed for each lubricant type.
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