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首页> 外文期刊>International Journal of Heat and Fluid Flow >Objective function choice for control of a thermocapillary flow using an adjoint-based control strategy
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Objective function choice for control of a thermocapillary flow using an adjoint-based control strategy

机译:使用基于伴随的控制策略控制热毛细血管流量的目标函数选择

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The problem of suppressing flow oscillations in a thermocapillary flow is addressed using a gradient-based control strategy. The physical problem addressed is the "open boat" process of crystal growth, the flow in which is driven by thermocapillary and buoyancy effects. The problem is modeled by the two-dimensional unsteady incompressible Navier-Stokes and energy equations under the Boussinesq approximation. The goal of the control is to suppress flow oscillations which arise when the driving forces are such that the flow becomes unsteady. The control is a spatially and temporally varying temperature gradient boundary condition at the free surface. The control which minimizes the flow oscillations is found using a conjugate gradient method, where the gradient of the objective function with respect to the control variables is obtained from solving a set of adjoint equations. The issue of choosing an objective function that can be both optimized in a computationally efficient manner and optimization of which provides control that damps the flow oscillations is investigated. Almost complete suppression of the flow oscillations is obtained for certain choices of the objective function. (C) 2015 Elsevier Inc. All rights reserved.
机译:使用基于梯度的控制策略解决了抑制热毛细管流中的流振荡的问题。解决的物理问题是晶体生长的“开船”过程,其中的流动由热毛细作用和浮力作用驱动。该问题由二维非定常不可压缩的Navier-Stokes和Boussinesq近似下的能量方程建模。该控制的目的是抑制当驱动力使得流量变得不稳定时出现的流量振荡。该控制是在自由表面上随时间变化的温度梯度边界条件。使用共轭梯度法可以找到使流动振荡最小的控制方法,其中目标函数相对于控制变量的梯度是通过求解一组伴随方程获得的。研究了选择目标函数的问题,该目标函数既可以以计算有效的方式进行优化,又可以通过优化来提供可抑制流量波动的控制。对于目标函数的某些选择,几乎可以完全抑制流动振荡。 (C)2015 Elsevier Inc.保留所有权利。

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