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以压力为基本求解变量数值模拟粘性超、跨音速流动 被引量:2
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作者 张谋进 c.m.wong 《应用力学学报》 CAS CSCD 北大核心 2002年第1期87-89,共3页
应用以压力为基本求解变量的SIMPLE方法 ,对一双喉喷管中的层流超音速流动和一扩压器中的紊流跨音速流动进行了数值计算。计算结果显示 ,本文的计算结果与文献数据及实验结果相符很好。表明本文方法对可压缩流动有很高的模拟精度。
关键词 NAVIER-STOKES方程 超音速流动 跨音速流动 粘性流动 数值模拟 可压缩流体
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Ultralow switching voltage and power consumption of GeS_(2)thin film resistive switching memory
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作者 N.Lyapunov C.H.Suen +7 位作者 c.m.wong Xiaodan Tang Z.L.Ho K.Zhou X.X.Chen H.M.Liu Xiaoyuan Zhou J.Y.Dai 《Journal of Advanced Dielectrics》 CAS 2021年第1期22-29,共8页
The coming Big Data Era requires progress in storage and computing technologies.As an emerging memory technology,Resistive RAM(RRAM)has shown its potential in the next generation high-density storage and neuromorphic ... The coming Big Data Era requires progress in storage and computing technologies.As an emerging memory technology,Resistive RAM(RRAM)has shown its potential in the next generation high-density storage and neuromorphic computing applications,which extremely demand low switching voltage and power consumption.In this work,a 10 nm-thick amorphous GeS_(2)thin film was utilized as the functional layer of RRAM in a combination with Ag and Pt electrodes.The structure and memory performance of the GeS_(2)-based RRAM device was characterized-it presents high on/off ratio,fast switching time,ultralow switching voltage(0.15 V)and power consumption(1.0 pJ and 0.56 pJ for PROGRAM and ERASE operations,respectively).We attribute these competitive memory characteristics to Ag doping phenomena and subsequent formation of Ag nano-islands in the functional layer that occurs due to diffusion of Ag from electrode into the GeS_(2)thin film.These properties enable applications of GeS_(2)for low energy RRAM device. 展开更多
关键词 GeS_(2) conductive bridge memory thin film resistive switching memory
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