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集成电容式传感器边界电极的静电电容值分析 被引量:1
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作者 王阳 陈军宁 柯导明 《电子学报》 EI CAS CSCD 北大核心 2010年第6期1410-1413,共4页
本文研究一种梳齿电极结构的集成电容式传感器,利用保角变换对其边界电极的静电电容值情况进行推导,给出了边界电极电容值的解析表达式,并利用Ansys软件对其进行仿真验证.结果显示解析公式得到的计算结果和软件仿真结果相吻合,说明得到... 本文研究一种梳齿电极结构的集成电容式传感器,利用保角变换对其边界电极的静电电容值情况进行推导,给出了边界电极电容值的解析表达式,并利用Ansys软件对其进行仿真验证.结果显示解析公式得到的计算结果和软件仿真结果相吻合,说明得到的公式具有高的精度.利用所给的解析表达式可以为设计和应用该结构电容式传感器提供更好的理论基础. 展开更多
关键词 电容式传感器 静电电容值 边界电极 保角变换
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征服“帕金森”──微电极边界定位法在苍白球毁损术治疗帕金森病中的应用
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《中国科技奖励》 2001年第2期22-24,共3页
关键词 电极边界定位法 苍白球毁损术 帕金森病 治疗
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微电极边界法定位在苍白球定向手术中的应用 被引量:2
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作者 张华 高国栋 +5 位作者 张宝国 王学廉 贺世民 王庆丰 冯兴军 李立宏 《中华神经外科杂志》 CSCD 北大核心 1999年第6期378-379,共2页
关键词 震颤性麻痹 苍白球定向手术 电极边界
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基于算子分解方法的EIT多目标重构
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作者 吴克坚 董秀珍 +1 位作者 付峰 杨继庆 《中国医学物理学杂志》 CSCD 2011年第1期2437-2440,共4页
目的:通过一种新的电阻抗断层成像算法-算子分解方法,以期该算法分析并运用到实际的电阻抗成像问题中。方法:构造了Neumann-Dirichlet算子并论述了其性质,通过技巧性处理得到了较为实用的算子分解方法的主要结论。结果:在全电极边界条... 目的:通过一种新的电阻抗断层成像算法-算子分解方法,以期该算法分析并运用到实际的电阻抗成像问题中。方法:构造了Neumann-Dirichlet算子并论述了其性质,通过技巧性处理得到了较为实用的算子分解方法的主要结论。结果:在全电极边界条件模型下,应用算子分解方法的正则化技术分别得到了无噪声和有噪声两种情况的测试点的示意图及多目标的重构结果。结论:算子分解方法提供了一种较为简单的、鲁棒的电阻抗断层成像算法,对于加噪后的多目标重构以及测量边界变形都有较优的性能。 展开更多
关键词 电阻抗断层成像 算子分解方法 电极边界模型 逆问题
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Electro-osmotic chemical behavior of clayey soil under various boundary conditions 被引量:1
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作者 XUE Zhi-jia XIONG Qi 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1493-1504,共12页
The use of electro-osmotic chemical is an effective method to improve the clayey soil foundation.Various boundary conditions can be adopted in this method.In this work,two electrode–clay contacts,three solution condi... The use of electro-osmotic chemical is an effective method to improve the clayey soil foundation.Various boundary conditions can be adopted in this method.In this work,two electrode–clay contacts,three solution conditioners,and four anode solution supply times were used for clayey soil improvement.Based on the experimental data,electro-osmotic consolidation theory,and transport of ion theory,it is found that the electro-osmotic chemical effect of the separation of electrode–clay(E_S)is more beneficial for the transport of Ca^(2+),production of cementing material,and reduction of water content than that of electrode–clay(E_C)joining;through electrode–clay contact separation,the anode solution conditioner(NaPO3)6(E_SHMP)delayed the cementing reaction and then increased the transport of Ca^(2+)near the cathode,which increased the amount of cementing material and the electro-osmotic chemical effect;and when the anode conditioner(NaPO3)6 was used,two days of anode solution supply followed by three days cut off from the anode solution led to the highest undrained shear strength increase after the application of electro-osmotic chemical,which resolved the uneven electro-osmotic chemical effect in the E_SHMP. 展开更多
关键词 electro-osmotic chemical boundary conditions clayey soil improvement electrode−clay contacts solution conditioner anode solution supply time
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Anode Plasma Influence on Breakdown Formation in Explosive-Emission Electron Sources
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作者 Eduard N. Abdullin Gennady P. Bazhenov Alexander V. Morozov 《Journal of Energy and Power Engineering》 2012年第9期1536-1541,共6页
Breakdown formation in the explosive-emission sources is related to the interelectrode gap filling with the cathode and anode plasma generated at the anode and in the gap under the beam influence. Under conditions of ... Breakdown formation in the explosive-emission sources is related to the interelectrode gap filling with the cathode and anode plasma generated at the anode and in the gap under the beam influence. Under conditions of saturation of the cathode plasma emissive ability as well as when the measures on the emission boundary stabilization are taken, the anode plasma has the deciding part in the formation of the electron source breakdown. The paper presents the results of the anode plasma investigations obtained to solve the problem of the electron beam length increase in the explosive-emission sources. The data concerning the gas release from the anode, the mechanism of the anode plasma formation and the anode plasma influence on the parameters of the generated electron beam are presented as well. 展开更多
关键词 Explosive-emission electron source gas release anode plasma breakdown.
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