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Operational Controllability of Heat Exchanger Networks

机译:热交换器网络的操作可控性

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Process integration is motivated from economic benefits, but it also impacts on the plant behavior introducing interactions and in many cases making the process more difficult to control and operate. During the operation utility flow rates and bypasses are widely used for effective control of process stream target temperatures, but the number of utility units is usually less than the number of process streams in the network and some bypasses should be selected. This paper addresses the optimal bypass design for heat exchanger networks. It consists in a model-based iterative procedure considering controllability metrics and worst-case disturbance rejection with minimum economic penalty. This is essentially a piecewise linearization approach producing excellent results. The methodology proposed is demonstrated using a case study with 3 different structures, making possible a comparison among different options on a quantitative basis, taking into account the optimal operation attainable with minimum total annual cost. These results clearly point out for the need of a simultaneous framework for design with controllability and profitability. The main goal of this work is to contribute within the field of optimal operation and control of HENs and the definition of the operational controllability concept.
机译:流程整合是激励经济效益,但它也会影响植物行为引入互动,并且在许多情况下,使过程更难以控制和运作。在操作期间,效用流速和旁路广泛用于处理流程目标温度的有效控制,但公用事业单元的数量通常小于网络中的过程流的数量,并且应该选择一些旁路。本文解决了热交换器网络的最佳旁路设计。它包括考虑可控性度量和最坏情况干扰拒绝的基于模型的迭代程序,以及最小的经济罚款。这基本上是一种分段线性化方法,产生出色的结果。使用具有3种不同结构的案例研究来证明所提出的方法,使得可以在定量的基础上进行比较,考虑到最低总年度成本的最佳操作。这些结果清楚地指出了具有可控性和盈利能力的同时设计的同时框架。这项工作的主要目标是在母鸡的最佳运行和控制领域以及操作控制性概念的定义中作出贡献。

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