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军队地震医学救援应急卫勤统计平台研究与设计 被引量:1
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作者 谢嵩源 谢孟 +3 位作者 谢建福 李立宇 刘彬 代晶 《医疗卫生装备》 CAS 2014年第3期39-41,共3页
目的:为提高地震医学救援应急卫勤统计效率,设计一套基于军事综合信息网和远程医学卫星网的应急卫勤统计平台。方法:根据四川芦山4·20 7.0级强烈地震军队医学救援应急卫勤统计特点,对应急统计平台进行需求分析,从平台框架结构、工... 目的:为提高地震医学救援应急卫勤统计效率,设计一套基于军事综合信息网和远程医学卫星网的应急卫勤统计平台。方法:根据四川芦山4·20 7.0级强烈地震军队医学救援应急卫勤统计特点,对应急统计平台进行需求分析,从平台框架结构、工作流程及各功能模块等方面进行设计。结果:该平台可实现卫勤信息远程上报、快速传输、海量存储、分级汇总、科学分析、全面共享等功能。结论:该平台为统计人员提供了方便快捷的上报及统计途径,为决策人员提供了及时准确的统计信息,具有良好的推广应用前景。 展开更多
关键词 军队 地震医学救援 应急卫勤统计 统计平台设计
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The Design of Gear Parameters Visual System based on LISP
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作者 Hongtao Guo Weiguo Zhang 《International Journal of Technology Management》 2013年第2期31-33,共3页
Article use Visual LISP development tools and DCL dialog technology, which implements the standard straight teeth, a two- dimensional cylindrical gear paranaetric drawing on AutoCAD platform, with easy to operate and ... Article use Visual LISP development tools and DCL dialog technology, which implements the standard straight teeth, a two- dimensional cylindrical gear paranaetric drawing on AutoCAD platform, with easy to operate and improve design efficiency. We achieved that using the dialog box design input parameters, and gear parts of the design calculations, parameters proofreading and all kinds of gear design drawing different structures by programming. The output is fully automated computer-aided design system. The results show that the design of the system significantly improves the efficiency of the part design. 展开更多
关键词 Visual LISP AUTOCAD DCL Spur gear parameter
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Multi-parameter optimization design, numerical simulation and performance test of mixed-flow pump impeller 被引量:5
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作者 BING Hao CAO ShuLiang 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第9期2194-2206,共13页
On the basis of the three-dimensional design platform of the mixed-flow pump impellers, an optimization design system was developed in this paper by improving the genetic algorithm with application of both strategies ... On the basis of the three-dimensional design platform of the mixed-flow pump impellers, an optimization design system was developed in this paper by improving the genetic algorithm with application of both strategies of keeping the optimal individu- al and employing the niche. This system took the highest efficiency of the impeller as the optimization objective and employed P, a0, A0h and A0t, which could directly affect the shape and the position of the blade, as optimization parameters. In addition, loss model was used to obtain fast and accurate prediction of the impeller efficiency. The optimization results illustrated that this system had advantages such as high accuracy and fine convergence, thus to effectively improve the design of the mixed-flow pump impellers. Numerical simulation was applied to determine the internal flow fields of the impeller obtained by optimization design, and to analyze both the relative velocity and the pressure distributions. The test results demonstrated that the mixed flow pump had the highest efficiency of 87.2%, the wide and flat high efficiency operation zone, the relatively wide range of blade angle adjustment, fine cavitation performance and satisfied stability. 展开更多
关键词 mixed-flow pump IMPELLER optimization design performance test numerical simulation
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