首页> 外文学位 >A MIXED-INTEGER NONLINEAR PROGAMMING APPROACH FOR THE SYSTEMATIC SYNTHESIS OF ENGINEERING SYSTEMS (PROCESS SYNTHESIS, NONDIFFERENTIABLE OPTIMIZATION, HEAT INTEGRATION, OPERATIONS RESEARCH, COMPUTER-AIDED DESIGN).
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A MIXED-INTEGER NONLINEAR PROGAMMING APPROACH FOR THE SYSTEMATIC SYNTHESIS OF ENGINEERING SYSTEMS (PROCESS SYNTHESIS, NONDIFFERENTIABLE OPTIMIZATION, HEAT INTEGRATION, OPERATIONS RESEARCH, COMPUTER-AIDED DESIGN).

机译:工程系统系统综合的混合整数非线性规划方法(过程综合,不可微优化,热集成,运筹学,计算机辅助设计)。

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This thesis addresses the development of a framework and optimization procedures to be used within a mixed-integer nonlinear programming (MINLP) approach to the synthesis of engineering systems. Based on a superstructure representation for alternative configurations, a general framework is presented that takes explicitly into account inherent nonlinearities and interactions in a system, and that allows the simultaneous structural and parameter optimization of processing systems. The underlying model corresponds to a MINLP program with a particular mathematical structure where the discrete variables are binary, which appear linearly and are separable from the continuous variables. Also, nonlinearities are only involved in inequality constraints and in the objective function.; For the solution of this class of problems, an outer-approximation algorithm is proposed that effectively exploits the particular mathematical structure. Based on the mathematical programming principles of decomposition, outer-approximation and relaxation, the proposed algorithm consists of solving an alternating finite sequence of nonlinear programming subproblems and relaxed versions of a mixed-integer linear master program. The theoretical study of the bounding, convergence and optimality properties of the algorithm is presented for the case of a convex continuous space in the MINLP programs addressed in this thesis. Also, the relationship between the proposed algorithm and the generalized Benders decomposition (GBD) method is established, and a proof is presented to show that the former method will always provide lower bounds that are either of the same quality or else tighter than the corresponding ones predicted by GBD.; To illusrate both the perfomance of the outer-approximation algorithm and the application of the proposed MINLP framework for synthesis, several example problems are solved including the optimal design of a gas transmission network, for which a MINLP formulation is derived.; To evaluate and compare alternatives based on more than one criterion when performing synthesis of processing systems, a method is presented for the simultaneous optimization and heat integration of process flowsheets. The method handles explicitly variable flowrates and temperatures of the process streams, and relies on a new representation of the minimum utility target for heat recovery networks. Finally, preliminary experience is reported on the synthesis of integrated processing systems.
机译:本文解决了在工程系统综合的混合整数非线性规划(MINLP)方法中使用的框架和优化程序的开发问题。基于用于替代配置的上层结构表示,提出了一个通用框架,该框架明确考虑了系统中固有的非线性和相互作用,并允许同时优化处理系统的结构和参数。基础模型对应于具有特定数学结构的MINLP程序,其中离散变量是二进制的,线性地出现并且可与连续变量分开。同样,非线性仅涉及不平等约束和目标函数。为了解决此类问题,提出了一种有效利用特定数学结构的外部近似算法。基于分解,外部逼近和松弛的数学编程原理,所提出的算法包括求解非线性规划子问题的交替有限序列和混合整数线性主程序的松弛版本。本文针对MINLP程序中凸连续空间的情况,对算法的边界,收敛性和最优性进行了理论研究。并且,建立了所提出算法与广义Benders分解(GBD)方法之间的关系,并提供了证明,表明前一种方法将始终提供相同质量或比相应方法更严格的下界由GBD预测。为了说明外部逼近算法的性能以及所提出的MINLP框架在合成中的应用,解决了一些示例性问题,包括气体传输网络的优化设计,为此得出了MINLP公式。为了在执行处理系统综合时基于多个标准评估和比较替代方案,提出了一种同时优化和热集成工艺流程图的方法。该方法显式地处理工艺流的流速和温度,并且依赖于热回收网络的最小效用目标的新表示。最后,报告了综合处理系统综合方面的初步经验。

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