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Optimization model establishment and optimization software development of gas field gathering and transmission pipeline network system

机译:气田集输管网系统优化模型建立与优化软件开发

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To minimize total construction investment of the gas field gathering and transmission pipeline network, the mathematic model for optimization design of the gathering and transmission pipeline network of the gas field is established, which takes the pipeline network topology layout, pipe diameter, wall thickness and electric tracing power as the decision variants and the pipeline hydraulic equilibrium, thermodynamic equilibrium and actual process requirements as the constraint conditions. Based on the structural features of the model, the mathematic model is decomposed into the pipeline network topology optimization and parameter optimization problem. The hybrid optimization solution strategy is proposed including multiple layers, punishment function and intelligent optimization algorithm. Based on the above work, 7 kernel program classes are developed with the aid of C++ Builder development platform, OLE DB database connection technology and Map Objects component technology. Based on these classes, the gathering and transmission pipeline network layout demonstration, process computing and optimization design is implemented via computers, thus the gathering and transmission pipeline network optimization design platform is developed. This software is used to optimize design of the gathering and transmission pipeline network in a block of Daqing oil field. Compared to the artificial design scheme, the optimization scheme can save 13.9% of the investment cost.
机译:为了最大程度地减少气田集输管网的建设总投资,建立了气田集输管网优化设计的数学模型,该模型采用了管网拓扑布局,管径,壁厚和电示踪力作为决策变量,管道水力平衡,热力学平衡和实际过程要求作为约束条件。根据模型的结构特点,将数学模型分解为管网拓扑优化和参数优化问题。提出了包括多层,惩罚函数和智能优化算法的混合优化解决方案策略。基于上述工作,借助C ++ Builder开发平台,OLE DB数据库连接技术和Map Objects组件技术,开发了7种内核程序类。基于这些类,通过计算机实现集输管道网络布局的演示,过程计算和优化设计,从而开发了集输管道网络优化设计平台。该软件用于优化大庆油田某区块集输管道网络的设计。与人工设计方案相比,该优化方案可节省投资成本的13.9%。

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