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液体粘度
相关语句
  liquid viscosity
    ON MEASURING LIQUID VISCOSITY
    液体粘度测量之讨论
短句来源
    Correction on the Error of the Moment(of Force) in the Experiment of"Measuring Liquid Viscosity by Means of Rotary Column"
    “转柱法测液体粘度”实验中力矩误差的修正
短句来源
    Effects of Liquid Viscosity on Particle Circulating Velocity and Flow Regime Characteristic Velocities in Gas-Liquid-Solid Three -Phase Circulating Fluidized Beds
    液体粘度对气液固三相循环流化床颗粒循环速度和流型特征速度的影响
短句来源
    A METHOD FOR LIQUID VISCOSITY COEFFICIENT MEASUREMENT USING INCLINED TUBE
    倾斜管式液体粘度测量方法理论及实验研究
短句来源
  “液体粘度”译为未确定词的双语例句
    Viscosity Calculation of Pure Gas, Gas Mixture and Liquid
    纯气体、混合气体及液体粘度的计算
短句来源
    Calculation method of viscosity for pure gas, mixed gas and liquid at ambient pressure is discussed.
    介绍常压下纯气体及混合气体,加压下纯气体及混合气体以及液体粘度的计算方法。
短句来源
    Experimental results show that the particle circulating velocities increase with increasing liquid velocity, superficial liquid velocity and secondary liquid velocity.
    实验研究了液体粘度、表观液体速度、表观气体速度、辅助液体速度及颗粒密度对颗粒循环速度的影响。 随着液体粘度的增加,颗粒循环速度增加;
短句来源
    A theoreticlly corrected formula in method of dropping ball for measuring the coefficient of viscosity
    物理实验落球法测液体粘度的理论修正公式
短句来源
    5. The gravity waves in a rectangular elastic fluid-shell coupled system areresearched in detail, and some shapes under different frequency and differentpower are observed, and the effect of viscid to system is researched. All of theseare of certain directive signification in resolving the problem in practice object.
    5.对矩形弹性壳液耦合系统中的重力波进行了实验研究,观察到不同激振频率和激振力时系统中的大幅低频重力波,研究了液体粘度对产生重力波的影响,对解决工程实际问题有一定的指导意义。
短句来源
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  liquid viscosity
Calculations are performed for the case where the temperature dependence of the liquid viscosity may be represented by an exponential power series.
      
Rotational viscosimeters are widely used to determine liquid viscosity.
      
The central segment of the profile of the thermocapillary depression is obtained for different values of the layer thickness, the liquid viscosity and the heater temperature.
      
It is shown that the flow kinematics is independent of the liquid viscosity and the flow dynamics depends on it.
      
An increase in the liquid viscosity leads to a decrease in the depression diameter, and the fringe pattern tends to a circular shape.
      
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Liquid viscosity is an important physical measure to show liquid nature. As to its measuring methods, there are such methods as ball dropping in a single tube, ball dropping in multi-tube, capillary tube and rotation. This paper deals with some problems in the viscosity measuring experiment.

液体粘度是表征液体性质的一个重要的物理量,关于它的测量方法,有单管落球法多管落球法、毛细管法和旋转法等.本文就毛细管法测粘度实验中的一些问题进行些讨论。

Calculation method of viscosity for pure gas, mixed gas and liquid at ambient pressure is discussed.

介绍常压下纯气体及混合气体,加压下纯气体及混合气体以及液体粘度的计算方法。

According to the interaction between two phases of liquid and solid, put forward a mechanism of liquid slipping along solid surface. When the flow rate of the liquid slipping along the solid surface exceeds that of a critical speed, slipping will occur and drag reduction will be realized consequently; otherwise, the liquid and solid will have an identical critical speed. The smaller the power of adhesion between solid and liquid, the greater the viscosity of the liquid, and it is easy to realize slipping drag...

According to the interaction between two phases of liquid and solid, put forward a mechanism of liquid slipping along solid surface. When the flow rate of the liquid slipping along the solid surface exceeds that of a critical speed, slipping will occur and drag reduction will be realized consequently; otherwise, the liquid and solid will have an identical critical speed. The smaller the power of adhesion between solid and liquid, the greater the viscosity of the liquid, and it is easy to realize slipping drag reduction with a smaller critical flow rate, and put forward a concrete recommendation for slipping drag reduction.

根据固液两相间的相互作用,提出了液体沿固体表面滑移的机理。当液体沿固体表面的流速超过临界速度时,出现滑移,这样能实现减阻;否则液体与固体边界同速。固液间的粘附功越小,并且液体的粘度越大时,临界流速越小,越易实现滑移减阻,并为滑移减阻提出了具体建议。

 
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