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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Nonlinear optimal control policies for buoyancy-driven flows in the built environment
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Nonlinear optimal control policies for buoyancy-driven flows in the built environment

机译:APS-流体动力学APS分部第70届年会-事件-建筑物环境中浮力驱动的流量的非线性最优控制策略

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We consider optimal control of turbulent buoyancy-driven flows in the built environment, focusing on a model test case of displacement ventilation with a time-varying heat source. The flow is modeled using the unsteady Reynolds-averaged equations (URANS). To understand the stratification dynamics better, we derive a low-order partial-mixing ODE model extending the buoyancy-driven emptying filling box problem to the case of where both the heat source and the (controlled) inlet flow are time-varying. In the limit of a single step-change in the heat source strength, our model is consistent with that of Bower et. al (JFM 2008). Our model considers the dynamics of both `filling' and `intruding' added layers due to a time-varying source and inlet flow. A nonlinear direct-adjoint-looping optimal control formulation yields time-varying values of temperature and velocity of the inlet flow that lead to `optimal’ time-averaged temperature relative to appropriate objective functionals in a region of interest.
机译:我们考虑在建筑环境中对湍流浮力驱动的流量进行最佳控制,重点是时变热源置换通风的模型测试案例。使用非稳态雷诺平均方程(URANS)对流进行建模。为了更好地了解分层动力学,我们导出了一个低阶部分混合ODE模型,将浮力驱动的排空填充箱问题扩展到热源和(受控)入口流量均随时间变化的情况。在热源强度发生单步变化的限制下,我们的模型与Bower等人的模型一致。 (JFM 2008)。我们的模型考虑了源和进口流量随时间变化的“填充”层和“插入”层的动力学。非线性直接伴随回路最优控制公式可得出进口流的温度和速度随时间变化的值,相对于目标区域中的适当目标函数,该值会导致“最佳”时间平均温度。

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