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1)  microchannel
微槽道
1.
Finite length microchannel flow in transitional regime(—Analytical prediction compared with experiment);
有限长度的过渡领域微槽道流动(—分析预测和试验的比较)(英文)
2.
PIV measurement and simulation in a curved microchannel;
弯曲微槽道内流场的PIV测量和数值模拟
3.
Heat transfer mechanism of saturated boiling flow in the veridical rectangular microchannels;
竖直矩形微槽道内的饱和沸腾换热研究
2)  micro-channel
微槽道
1.
Study on the manufacturing process of micro-channel reactor for methanol reforming;
甲醇重整微槽道反应器加工工艺的研究
2.
2D simulation of couette flows in micro-channel;
二维微槽道内的流动模拟
3.
The algorithm of gaseous flow in two-dimensional micro-channels was set up and the corresponding program based on micro-flow theory was developed.
基于微尺度流动的滑移模型,建立了二维微槽道内气体流动的计算方法,并开发了计算程序。
3)  Micro channel
微槽道
1.
The flows in finite long flat plate and micro channel were simulated by the information preservation method.
本文运用信息保存法对低速二维的流动现象进行模拟,考察了低速条件下的有限平板绕流以及微槽道气体流动问题。
4)  micro-channels
微槽道
1.
Based on the assumption of locally fully developed flow and slip-fiow theory, we preseota method to simulate the heat transfer and momentum exchange of gas with a solid surfacein micro-channels, and the method was proved by comparing with Pfahler s exprimentalresults.
基于此,通过引入Knudsen数,以局部充分发展流动假设为前提,在N-S方程基础上,数值模拟了微槽道的流动与换热情况,并与国外的实验结果进行了对比分析[5-6]。
2.
The velocity profiles and temperature distributions of gas flows in micro-channels, for Knudsen numbers ranging from 0.
2范围内气体微槽道流动的速度和温度分布。
5)  mini-channel
微细槽道
1.
Experimental and numerical study on the performances of mini-channel heat sinks
微细槽道散热器性能实验和数值研究
6)  micro-annular channel
微环缝槽道
1.
In this article, the momentum and energy equations with the boundary conditions of slip velocity and temperature jump are solved for the hydraulic and thermal fully developed laminar flow of the incompressible fluid in micro-annular channel.
本文针对微环缝槽道采用速度滑移和温度跳跃边界条件求解了不可压缩气体的N-S方程和能量方程,理论分析了微环缝槽道在单侧或双侧不同热流密度加热条件下的流动与层流换热特性,讨论了Kn数、内外径比对流动阻力及换热特性的影响。
补充资料:微孔膜电解槽
分子式:
CAS号:

性质:改进的电解食盐溶液隔膜电解槽。用聚合物制成微孔膜代替石棉,具有平滑而均匀的表面,可使两极间距缩小,从而有效地降低槽电压。目前尚处于工业试验阶段。

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