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Total annualized cost optimality properties of state space models for mass and heat exchanger networks

机译:质量和热交换器网络的状态空间模型的总年度成本最优属性

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摘要

In this work, we employ a state space representation of a heat/mass exchanger network to derive a matematical formulation of the minimum total annualized cost (TAC) problem. Mathematical properties of the resulting nonlinear program's global optimum are then derived, using a variation induced minimization (VIM) technique and control theoretic concepts. This technique successfully identifies variables which are zero at the global optimum, thus reducing the size of the optimization probelm. It is established that, under certain conditions, all self-recycle and total network bypass flow rates can be chosen to be zero at TAC minimum. Two heat exchange network (HEN) TAC synthesis problems are employed to illustrate the validity of these properties, as well as the importance of the conditions under which the properties are derived. A hybrid algorithm, which consists of branch and bound underestimation with imbedded interval analysis, is empolyed in idenifying numerically the optimum of these HEN TAC problems
机译:在这项工作中,我们采用热/质交换网络的状态空间表示法,得出最小总年化成本(TAC)问题的数学公式。然后,使用变量诱导最小化(VIM)技术和控制理论概念,得出所得非线性程序的全局最优值的数学属性。该技术成功地确定了在全局最佳状态下为零的变量,从而减小了优化探针的大小。可以确定的是,在某些条件下,所有自循环和总网络旁路流量都可以选择为TAC最小值为零。使用两个热交换网络(HEN)TAC合成问题来说明这些性质的有效性,以及得出这些性质的条件的重要性。混合算法由分支和边界低估与嵌入式区间分析组成,在数值上确定这些HEN TAC问题的最优方法时被强调。

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