1) capillary pressure gradient
毛细压力梯度
2) capillary pressure
毛细压力
1.
Influence of a nonionic surfactant on the relationships between capillary pressure and saturation in two-phase system;
非离子表面活性剂对两相系统毛细压力和饱和度关系的影响
2.
Experimental study of relationship between capillary pressure and saturation in two-phase system in porous media;
多孔介质两相系统毛细压力与饱和度关系试验研究
3.
Experimental study of capillary pressure-saturation relationships for immiscible liquids in porous media;
多孔介质不溶混流体毛细压力与饱和度关系实验研究
3) Pressure Gradient
压力梯度
1.
Calculation for pressure gradients of two-phase flow for steam injection in thermal production wells;
热采井注蒸汽过程两相流压力梯度计算方法
2.
A convenient model of pressure gradient calculation of gas-liquid slug flow in vertical wellbore;
垂直井筒气液段塞流压力梯度的简便算法
3.
Predicting pressure gradient of fluid in oil tubing on the condition of continuous gas-lift;
连续气举条件下举液管柱内流体的压力梯度预测
4) pressure gradients
压力梯度
1.
The influence of main flow nonparallel and pressure gradients is considered to show the physical characteristics of flat boundary flow.
为更好反映平板边界层流动的物理特征和本质,该文同时考虑到主流的非平行性和压力梯度的作用。
2.
By using the method of direct numerical simulation, the coherent structures in the wall region of a turbulent boundary layer with either steady or changing pressure gradients were studied.
采用共振三波的一个周期作为湍流边界层近壁区相干结构的初值 ,用直接数值模拟方法对有压力梯度 ,包括定常压力梯度和变压力梯度作用下相干结构的演化进行了研究 ,得出其各种特性的变化与实验观测到的结果一致。
3.
The air pressure gradients of measured points in the shelter are calculated by mathematicsimulation.
介绍了对防空洞的温度、湿度、风速、热舒适度等参量的实测结果并进行定性分析;确定出离洞口较远处的洞内温度随时间变化的规律及地面复盖层的导温系数;进行数学模拟,由欧拉公式确定压力梯度随位置变化的情况;对改善本地人防工程的热湿功能提出初步看法。
5) capillary pressure-saturation relationship
毛细压力-饱和度关系
6) capillary pressure
毛细管压力
1.
Relationship between NMR T_2 cutoff and capillary pressure.;
核磁共振T_2截止值与毛细管压力的关系
2.
Relationship among capillary pressure,saturation and phases interfacial area;
毛细管压力、饱和度和相界面积间的关系
3.
It is more useful to utilize the fractal dimension as a bridge to implement the transformation between capillary pressure .
把分维值作为桥梁,实现了毛细管压力曲线和相渗曲线之间的相互转化,这比传统的只能利用毛细管压力曲线求相对渗透率曲线的手段更有优势,从而说明分形理论有可能成为研究岩心孔隙结构的重要手段。
补充资料:压力梯度校正因子
分子式:
CAS号:
性质:又称压力校正因子。在气相色谱法中,用以校正在色谱柱中由于载气的可压缩性所产生的压力梯度的因子。
CAS号:
性质:又称压力校正因子。在气相色谱法中,用以校正在色谱柱中由于载气的可压缩性所产生的压力梯度的因子。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条