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在考虑工质与热源间热阻损失的内可逆卡诺制冷机模型基础上,用一常数项表示热源间的热漏,用一常系数项表示循环中除热阻和热漏外的其余所有不可逆性(如摩擦、涡流、惯性效应等),提出了一类较为完善的不可逆卡诺制冷机模型,并对此不可逆制冷机模型进行优化分析,导出了其最佳制冷率与制冷系数间的优化关系和最大制冷系数及其相应的制冷率。由定义的一常数项和一常系数项可定性、定量地分析不可逆性对循环性能的影响,所得结果包含了有关文献的一些特例。最后,给出了详细的数值算例,说明本模型的有效性。 相似文献
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应用具有量子行为的粒子群优化算法,对支持向量(SVM)进行参数优化研究.根据支持向量机的分类准确率和泛化能力之间的关系,应用QPSO算法选取比较优秀的参数模型,比较参数模型的各项性能,选取最适合实际需要的参数模型.仿真表明,QPSO算法的SVM模型与PSO算法相比在分类准确率和泛化能力上均获得更好的效果,经QPSO优化后的SVM整体性能明显提高. 相似文献
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分析存在有限速率传质和质漏损失的联合循环化学发动机性能,导出功率、效率最佳关系,最大功率及其相应效率,以及最大效率及其相应功率 相似文献
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针对BLISS 2000优化过程中权值系数的引入给实际应用带来的困难,提出一种改进的BLISS优化过程——混合BLISS( Hybrid BLISS,HBLISS).该方法在保持BLISS 2000的基本算法结构的基础上取消权值系数,利用耦合变量的最小残差协调子系统级和系统级优化,给出了HBLISS的算法结构和基本流程... 相似文献
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This paper presents an actuator used for the trajectory correction fuze, which is subject to high impact loadings during launch. A simulation method is carried out to obtain the peak-peak stress value of each component, from which the ball bearings are possible failures according to the results. Subsequently, three schemes against impact loadings, full-element deep groove ball bearing and integrated raceway, needle roller thrust bearing assembly, and gaskets are utilized for redesigning the actuator to effectively reduce the bearings' stress. However, multi-objectives optimization still needs to be conducted for the gaskets to decrease the stress value further to the yield stress. Four gasket's structure parameters and three bearings' peak-peak stress are served as the four optimization variables and three objectives, respectively. Optimized Latin hypercube design is used for generating sample points, and Kriging model selected according to estimation result can establish the relationship between the variables and objec-tives, representing the simulation which is time-consuming. Accordingly, two optimization algorithms work out the Pareto solutions, from which the best solutions are selected, and verified by the simulation to determine the gaskets optimized structure parameters. It can be concluded that the simulation and optimization method based on these components is effective and efficient. 相似文献