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1.
A Study of the Relationship between Surfactant Structures and Interfacial Dilational Properties in EOR;
驱油表面活性剂分子结构与界面扩张流变性能关系研究
2.
Investigation of Macromolecule/Surfactant Interaction by Interfacial Dilational Rheology Method
界面扩张流变方法研究大分子与表面活性剂的相互作用
3.
Studies on Dilatational Rheological Viscoelasticity of Interface (Surfacial) of Surface Active Substance;
表面活性物质的界(表)面扩张流变粘弹性研究
4.
Study on the Aggregation Behavior of Surfactant at Interface by the Dilatational Rheological Methods
扩张流变法研究表面活性剂在界面上的聚集行为
5.
Study of Interfacial Dilational Viscoelastic Properties Between Polyelectrolyte and Surfactants at Water/oil Interface
表面活性剂与聚电解质界面扩张粘弹性研究
6.
Interface tension effect in two-layer Bénard-Marangoni convection
两层液体Bénard-Marangoni对流的界面张力效应
7.
This meter consists of a conduct having an enlarged section.
这种流量计包括一个具有断面扩张的导管。
8.
Influence of Nano-SiO_2 on Dilational Viscoelasticity of Liquid/air Interface of Different Surfactants;
纳米二氧化硅颗粒对表面活性剂溶液气液界面扩张粘弹性的影响
9.
Charge Number Effect on Interfacial Dilational Viscoelasticity Properties of Surfactant
不同价态盐对表面活性剂气—液界面扩张粘弹性的影响
10.
Kinetic Study on Polymer Chain Extension and Interfacial Reaction under Shear Flow;
剪切流场下聚合物扩链及界面反应动力学研究
11.
Interface position and molecule diffusion of two-phase laminar flow in Y-sensor
Y-sensor中两相层流交界面位置及分子扩散
12.
A Study of Interfacial Dilational Properties and Foam Properties of Foam Combination Flooding Model Systems;
泡沫复合驱模拟体系界面扩张粘弹与泡沫性质研究
13.
Temporal and Spatial Variation and Its Impact of Tourist Flow Volume in Zhangjiajie;
张家界市旅游客流量时空变化与影响研究
14.
The Heat Transfer Mechanism of Material [Liquid-Solid] Rheologic Shaped Interface and the Extablishment of Shaped Interface Based on the High Grad of Change of Temperature;
材料[液—固]流变界面传热机理与高梯度温变成型界面的建立
15.
A small ridge or swell moving across the interface of two fluids and dependent on surface tension.
波动依赖表面张力的运动穿过两种流质界面的小脊状或隆起
16.
Turbulent BL Structure: Wake, Wall layers. Inner, Outer Variables. Effects of Roughness.
紊流边界层结构:尾流,壁面层,内、变数。粗糙度效应。
17.
Diffuse Interface Field Variable Models Simulation of Grain Growth in Welding Heat Affected Zones;
焊接热影响区晶粒长大的扩散界面场变量模型模拟
18.
-- To safeguard world peace and oppose aggression and expansion.
——维护世界和平,反对侵略扩张。