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Simulation and optimization of water-wall tube panels design for power boilers

机译:电锅炉水壁管板设计的仿真与优化

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The article presents a water-wall tube panels simulation technique that uses finite element method as well as the power boiler water-wall structure design optimization method. Results of the proposed method verification and its application to the design of boilers of different capacities are discussed. The technique is to replace water-wall tube panels with equivalent plates. Replacement plates’ parameters calculation is reported, panels one-way heating metering is described. Optimization of the water-wall structure design is carried out in two stages: at the first stage, water-wall tube panels are replaced with orthotropic plates; at the second stage, sub-simulation with solid models is used to identify problem areas of the design. Solid-state models of the problem areas get connected to the orthotropic plates at calculated boundary conditions. The described approach improves accuracy of the simulation results and significantly reduces the models complexity and its computation time. The proposed simulation and optimization method has been tested and successfully applied to design power steam boilers with steam generating capacity of 500, 1030 and 1900 tons of steam per hour. As a result, while maintaining the specified reliability and durability, significant reduction of metal content in boiler structure is achieved.
机译:本文介绍了一种水壁管板仿真技术,采用有限元方法以及功率锅炉水上墙结构设计优化方法。讨论了所提出的方法验证及其在不同容量锅炉设计中的应用。该技术是用等效板取代水壁管板。替换板的参数计算报告,描述了面板单向加热计量。水壁结构设计的优化在两个阶段进行:在第一阶段,用正向板代替水壁管板;在第二阶段,使用实体模型的子模拟用于识别设计的问题区域。问题区域的固态模型在计算的边界条件下连接到正交板。所描述的方法提高了模拟结果的准确性,并显着降低了模型复杂性及其计算时间。已经测试了所提出的仿真和优化方法,并成功地应用于设计电源蒸汽锅炉,蒸汽产生容量为500,1030和1900吨蒸汽。结果,在保持指定的可靠性和耐久性的同时,实现了锅炉结构中的金属含量的显着降低。

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