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Simultaneous targeting and design for cooling water systems with multiple cooling water supplies

机译:同时确定和设计具有多个冷却水供应的冷却水系统

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摘要

This paper presents a technique for simultaneous targeting and design in cooling water systems comprising of at least two cooling towers and several cooling water using operations. The presented technique is based on a superstructure from which a mathematical formulation is derived using system specific variables and parameters. It is demonstrated that in a system like this, true optimality can only be realized by a holistic consideration of the entire cooling water system. Consideration of individual subsets of cooling towers with their dedicated cooling water operations yields suboptimal results. Four operational cases are considered and structural considerations of corresponding mathematical formulations presented. The first case results in a linear programming (LP) formulation, the second case yields a mixed integer linear programming (MILP) formulation whilst the other two cases yield mixed integer nonlinear programming (MINLP) formulations which cannot be exactly linearized. However, in all cases significant improvements in excess of 40% were realized in targeting, without compromising the heat duty of the cooling water using operations. The main objective of this investigation is to debottleneck the overall cooling water supply for the cooling water network.
机译:本文提出了一种在冷却水系统中同时瞄准和设计的技术,该系统包括至少两个冷却塔和几个使用操作的冷却水。提出的技术基于上层结构,使用系统特定的变量和参数可从中得出数学公式。已经证明,在这样的系统中,只有通过整体考虑整个冷却水系统才能实现真正的最优。如果考虑冷却塔的各个子集及其专用的冷却水运行,则会得出次优的结果。考虑了四个操作情况,并提出了相应数学公式的结构考虑。第一种情况产生线性规划(LP)公式,第二种情况产生混合整数线性规划(MILP)公式,而其他两种情况产生无法精确线性化的混合整数非线性规划(MINLP)公式。但是,在所有情况下,目标均实现了超过40%的显着改进,而不会影响使用操作的冷却水的热负荷。该研究的主要目的是消除冷却水网络的总体冷却水供应瓶颈。

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