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Basics of COP Maximum of Wastewater Heat Recovery System using an Analytical Optimization Method

机译:使用分析优化方法的废水热回收系统基础知识

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This article presents the basics of the mathematical analysis for determining the COP (coefficient of performance) optimum of a heat recovery system. A new sizing method is introduced to determine the optimal mass flow of hot water and well water and thus the optimal performance of the circulating pump. The optimal pump performance ensures maximum energy efficiency of the system, i.e. maximum coefficient of performance (COP) of the heat pump recovery system with using the chosen type of heat pump. The mathematical model of the heat recovery system is stationary, consisting of algebraic equations with lumped parameters. By using the analytical optimization procedure and the objective function, the local energy optimum conditions can be defined as a result, with respect to the mass flow. The governing equations for local optimization of the COP are presented in this paper. The resulting system of algebraic functions can only be solved numerically. For this purpose, Newton linearization and Gauss elimination methods should be used, which will be presented in the upcoming papers.
机译:本文介绍了用于确定热回收系统的最佳淘能(性能系数)的数学分析的基础。引入了一种新的施胶方法,以确定热水和井水的最佳质量流量,从而确定循环泵的最佳性能。最佳泵性能可确保系统的最大能量效率,即热泵回收系统的最大性能系数(COP),采用所选的热泵。热回收系统的数学模型是静止的,由具有总数参数的代数方程组成。通过使用分析优化程序和目标函数,可以相对于质量流量定义局部能量最佳条件。本文提出了COP局部优化的控制方程。代数函数的所得系统只能在数值上进行解决。为此目的,应使用牛顿线性化和高斯消除方法,将在即将到来的论文中呈现。

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