首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >OPTIMAL DESIGN OF A GAS TURBINE COGENERATION PLANT BY A HIERARCHICAL OPTIMIZATION METHOD WITH PARALLEL COMPUTING
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OPTIMAL DESIGN OF A GAS TURBINE COGENERATION PLANT BY A HIERARCHICAL OPTIMIZATION METHOD WITH PARALLEL COMPUTING

机译:并行计算的分层优化方法优化燃气轮机发电装置

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To attain the highest performance of energy supply systems, it is necessary to rationally determine types, capacities, and numbers of equipment in consideration of their operational strategies corresponding to seasonal and hourly variations in energy demands. Mixed-integer linear programming (MILP) approaches have been applied widely to such optimal design problems. The authors have proposed a MILP method utilizing the hierarchical relationship between design and operation variables to solve the optimal design problems of energy supply systems efficiently. In addition, some strategies to enhance the computation efficiency have been adopted: bounding procedures at both the levels and ordering of the optimal operation problems at the lower level. In this paper, as an additional strategy to enhance the computation efficiency, parallel computing is adopted to solve multiple optimal operation problems in parallel at the lower level. In addition, the effectiveness of each and combinations of the strategies adopted previously and newly is investigated. This hierarchical optimization method is applied to an optimal design of a gas turbine cogeneration plant, and its validity and effectiveness are clarified through some case studies.
机译:为了获得最高的能源供应系统性能,有必要根据与能源需求的季节性和每小时变化相对应的运行策略,合理确定设备的类型,容量和数量。混合整数线性规划(MILP)方法已广泛应用于此类最佳设计问题。作者提出了一种利用设计和操作变量之间的分层关系的MILP方法,以有效解决能源供应系统的最佳设计问题。另外,已经采取了一些提高计算效率的策略:在两个级别上都具有边界过程,而在较低级别上则是最佳操作问题的排序。在本文中,作为提高计算效率的另一种策略,采用并行计算在较低级别并行解决多个最优操作问题。此外,还研究了先前和新采用的每种策略及其组合的有效性。该分级优化方法应用于燃气轮机热电联产厂的优化设计,并通过案例研究阐明了其有效性和有效性。

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