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POWER FLOW ANALYSIS AND APPLICATION SIMULATION OF ELECTROMAGNETIC CONTINUOUSLY VARIABLE TRANSMISSION 被引量:3
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作者 LUO Yutao TAN Di MENG Fanzhen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第6期48-56,共9页
With the structure of two air gaps and two rotors, the electromagnetic continuously variable transmission(EMCVT) is a novel power-split continuously variable transmission(CVT). There are two kinds of power flowing... With the structure of two air gaps and two rotors, the electromagnetic continuously variable transmission(EMCVT) is a novel power-split continuously variable transmission(CVT). There are two kinds of power flowing through the EMCVT, one is mechanical power and the other is electric power. In the mean time, there are three power ports in the EMCVT, one is the outer rotor named mechanical power port and the other two are the inner rotor and the stator named electric power ports. The mechanical power port is connected to the driving wheels through the final gear and the electric ports are connected to the batteries through the transducers. The two kinds of power are coupled on the outer rotor of the EMCVT. The EMCVT can be equipped on the conventional vehicle being regarded as the CVT and it also can be equipped on the hybrid electric vehicle(HEV) as the multi-energy sources assembly. The power flows of these two kinds of applications are analysed. The back electromotive force(EMF) equations are illatively studied and so the dynamic mathematic model is theorized. In order to certify the feasibility of the above theories, three simulations are carried out in allusion to the above two kinds of mentioned applications of the EMCVT and a five speed automatic transmission(AT) vehicle. The simulation results illustrate that the efficiency of the EMCVT vehicles is higher than that of the AT vehicle owed to the optimized operation area of the engine. Hence the fuel consumption of the EMCVT vehicles is knock-down. 展开更多
关键词 Electromagnetic continuously variable transmission power flow analysis back electromotive force application simulation
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水泵水轮机空化流及转轮轴向受力分析 被引量:4
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作者 李琪飞 张正杰 +2 位作者 权辉 李光贤 郭彦峰 《太阳能学报》 EI CAS CSCD 北大核心 2020年第3期192-198,共7页
为研究水泵水轮机在水泵工况运行时的空化特性及转轮所受轴向力的变化情况,以某抽水蓄能电站模型水泵水轮机模型为研究对象,基于Zwart空化模型和SST k-ω湍流模型,在不同流量系数下进行不同空化数的三维数值模拟并与实验对比验证。结果... 为研究水泵水轮机在水泵工况运行时的空化特性及转轮所受轴向力的变化情况,以某抽水蓄能电站模型水泵水轮机模型为研究对象,基于Zwart空化模型和SST k-ω湍流模型,在不同流量系数下进行不同空化数的三维数值模拟并与实验对比验证。结果表明:在小流量和设计流量工况下气泡首先出现在吸力面靠近前缘位置并逐步向叶片出口和压力面扩展,而在大流量工况下气泡首先在压力面出现,并扩展至吸力面区域且已远离前缘位置,同时探讨了轴向力随着空化数的变化规律。 展开更多
关键词 抽水蓄能电站 空化流 流量 数值模拟 受力分析
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大功率双蜗壳磁力泵流场特性数值模拟与试验 被引量:1
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作者 林通 谢京 谢仁华 《新余学院学报》 2019年第6期24-30,共7页
为研究某型号大功率双蜗壳泵内部流动特性,采用三维软件建立了原机型的全流道水体模型,通过数值模拟的方法研究了定常条件下设计工况点及非设计工况点的内部流动特性、非定常条件下设计工况点的流动特性及力学特性。结果表明:数值模拟... 为研究某型号大功率双蜗壳泵内部流动特性,采用三维软件建立了原机型的全流道水体模型,通过数值模拟的方法研究了定常条件下设计工况点及非设计工况点的内部流动特性、非定常条件下设计工况点的流动特性及力学特性。结果表明:数值模拟结果中的外特性与厂家提供的试验值吻合较好,在设计工况下,效率为83.14%,扬程为77.54m,运行功率为197.8kW。通过分析数值模拟结果,发现原设计机型叶轮进口处存在一定的回流现象,在出口处存在尾迹-射流现象,这两种现象都与叶片的流线型态有关,在蜗壳的第9断面处存在较为明显的旋涡现象。研究结果对于同类产品的改进设计具有一定的参考价值。 展开更多
关键词 大功率双蜗壳磁力泵 数值模拟 流场分析 轴向力 优化设计
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