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1)  wall temperature jump
壁面温度跳跃
2)  jump temperature
温度跳跃
1.
First order slip velocity and jump temperature boundary conditions are employed to deter- mine the developing flow and heat transfer in the entrance region of a microtube.
对微圆管进口区运用一阶速度滑移和温度跳跃边界,考察了Kn、动量调和及热调和系数对流动与换热特性的影响机理和规律。
3)  temperature jump
温度跳跃
1.
Based on the energy and heat conductivity equations,an expression considering slip flow and temperature jump for fully developed temperature distribution of circular microchannel is achieved by means of the counter solution.
基于圆形微通道的能量守恒及热传导方程,在考虑速度滑移和温度跳跃的情况下,利用逆解法得到了一个热充分发展的温度场计算式。
2.
This article present the theoretical analysis of gas flow and heat transfer in micro rectangular channels in the regime of velocity slip and temperature jump.
分析了微矩形槽道内的不可压缩气体在速度滑移和温度跳跃区的流动和传热过程。
3.
A method for resolving the energy equation of the circular microchannel,which considers axial heat conduction,temperature jump,velocity slip and thermal entrance is presented.
提出了一种考虑轴向热传导、速度滑移、温度跳跃和入口效应情况下圆形微通道能量方程的求解方法。
4)  wall temperature
壁面温度
1.
These models are combined with the zone method to simulate wall temperature distribution in the MOCVD reactor with three separate vertical inlets.
分别采用透明体模型、黑体模型、灰体模型、三谱带漫反射模型、三谱带镜反射模型和二谱带模型对石英壁面的辐射特性进行模拟,并结合求解辐射传递方程的谱带区域法模型,计算了不同壁面特性下径向三重流MOCVD反应器的壁面温度分布。
2.
Wall temperature is associated with many operating parameters.
推力器过热是由于壁面温度逐渐升高,超过了推力器正常工作的限度,从而使推力器无法正常工作。
3.
In order to study the effect of wall temperature and free-stream velocity on the characteristics of the boundary layer,the characteristic in a convection boundary layer in air along a vertical heated plate was numerically simulated with CFD(computational fluid dynamics)software.
为了研究壁面温度和来流速度对边界层特性的影响,采用计算流体动力学(computational fluid dynamics,CFD)软件对空气流过竖直加热平板的对流边界层特性进行数值模拟。
5)  velocity slip and temperature jump
速度滑移和温度跳跃
6)  Jump intensity
跳跃强度
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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