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U型管换热器管束抽拉力的设计及校核计算
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作者 王彦丽 《石油和化工设备》 CAS 2023年第12期63-66,共4页
U型管换热器抽芯检查时,需要考虑抽拉力对支座和筒体的影响,不同的抽拉方式所产生的抽拉力是不同的。通过分析计算抽拉力的大小,核算设备支座及地脚螺栓,保证设备使用安全,优化设计。
关键词 U型管换热器 抽拉力 支座 地脚螺栓
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Multi-objective optimization of the streamlined head of high-speed trains based on the Kriging model 被引量:17
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作者 YAO ShuanBao GUO DiLong +2 位作者 SUN ZhenXu YANG GuoWei CHEN DaWei 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第12期3495-3509,共15页
As the running speed of high-speed trains increases, aerodynamic drag becomes the key factor which limits the further increase of the running speed and energy consumption. Aerodynamic lift of the trailing car also bec... As the running speed of high-speed trains increases, aerodynamic drag becomes the key factor which limits the further increase of the running speed and energy consumption. Aerodynamic lift of the trailing car also becomes the key force which affects the amenity and safety of the train. In the present paper, a simplified CRH380A high-speed train with three carriages is chosen as the model in order to optimize aerodynamic drag of the total train and aerodynamic lift of the trailing car. A constrained mul- ti-objective optimization design of the aerodynamic head shape of high-speed trains based on adaptive non-dominated sorting genetic algorithm is also developed combining local function three-dimensional parametric approach and central Latin hypercube sampling method with maximin criteria based on the iterative local search algorithm. The results show that local function parametric approach can be well applied to optimal design of complex three-dimensional aerodynamic shape, and the adaptive non-dominated sorting genetic algorithm can be more accurate and efficient to find the Pareto front. After optimization the aerodynamic drag of the simplified train with three carriages is reduced by 3.2%, and the lift coefficient of the trailing car by 8.24%, the volume of the streamlined head by 2.16%; the aerodynamic drag of the real prototype CRH380A is reduced by 2.26%, lift coefficient of the trailing car by 19.67%. The variation of aerodynamic performance between the simplified train and the true train is mainly concentrated in the deformation region of the nose cone and tail cone. The optimization approach proposed in the present paper is simple yet efficient, and sheds lights on the constrained multi-objective engineering optimization design of aerodynamic shape of high-speed trains. 展开更多
关键词 multi-objective optimization KRIGING genetic algorithms aerodynamic shape high-speed trains
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