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波浪破碎下油滴粒径分布理论模型研究 被引量:2
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作者 孙宝楠 袁业立 +2 位作者 韩磊 杨永增 连展 《海洋学报》 CAS CSCD 北大核心 2014年第9期30-36,共7页
海上溢油在波浪破碎的情况下经常会形成油滴,本文讨论了油滴形成的可能机制,根据量纲分析瑞利法建立了油滴卷入率与能量耗散率、卷入深度等破碎统计物理量的关系。基于量纲分析Π定理并根据毛细数、无量纲卷入时间与粘度比的实验关系,... 海上溢油在波浪破碎的情况下经常会形成油滴,本文讨论了油滴形成的可能机制,根据量纲分析瑞利法建立了油滴卷入率与能量耗散率、卷入深度等破碎统计物理量的关系。基于量纲分析Π定理并根据毛细数、无量纲卷入时间与粘度比的实验关系,导出了油径谱的理论模型。初步结果表明,理论谱斜率-2.29与观测谱斜率-2.3符合良好,剪切率、表面张力、油滴半径、油和水的黏度等因素是影响油滴总数的主要原因。 展开更多
关键词 量纲分析法 卷入率 油径谱 波浪破碎统计量
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Efficiency analysis and optimization of wireless power transfer system for freely moving biomedical implants 被引量:1
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作者 SHAO Qi LIU Hao FANG XueLin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第1期91-101,共11页
In the wireless power transfer system for freely moving biomedical implants,the receiving unit was generally inefficient for the reason that its design parameters including the receiving coil's dimension and recei... In the wireless power transfer system for freely moving biomedical implants,the receiving unit was generally inefficient for the reason that its design parameters including the receiving coil's dimension and receiving circuits' topology were always determined by experiments.In order to build the relationship between these parameters and the total transfer efficiency,this paper developed a novel efficiency model based on the impedance model of the coil and the circuit model of the receiving circuits.According to the design constraints,the optimal design parameters in the worst case were derived.The results indicate that the combination of the two-layered receiving coil and half-bridge rectifier has more advantages in size,efficiency and safety,which is preferred in the receiving unit.Additionally,when the load resistance increases,the optimal turn number of the receiving coil basically keeps constant and the corresponding transmitting current and total efficiency decrease.For 100 Ω load,the transmitting current and total efficiency in the worst case were measured to be 5.30 A and 1.45% respectively,which are much better than the published results.In general,our work provides an efficient method to determine the design parameters of the wireless power transfer system for freely moving biomedical implants. 展开更多
关键词 wireless power transfer system capsule endoscope freely moving biomedical implants receiving coil coil optimization EFFICIENCY
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