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不同粗糙度和润湿性的纳米孔中的自发吸入。

Spontaneous imbibition in nanopores of different roughness and wettability.

机构信息

Schlumberger Dhahran Carbonate Research Center, Dhahran Techno Valley-KFUPM, P.O. Box 39011, Dammam/Doha Camp 31942, Saudi Arabia.

出版信息

Langmuir. 2010 Aug 17;26(16):13342-52. doi: 10.1021/la101995t.

Abstract

The spontaneous imbibition of liquid in nanopores of different roughness is investigated using coarse grain molecular dynamics (MD) simulation. The numerical model is presented and the simplifying assumptions are discussed in detail. The molecular-kinetic theory introduced by Blake is used to describe the effect of dynamic contact angle on fluid imbibition. The capillary roughness is modeled using a random distribution of coarse grained particles forming the wall. The Lucas-Washburn equation is used as a reference for analyzing the imbibition curves obtained by simulation. Due to the statistical nature of MD processing, a comprehensive approach was made to average and smooth the data to accurately define a contact angle. The results are discussed in terms of effective hydrodynamic and static capillary radii and their difference as a function of roughness and wettability.

摘要

本文采用粗粒分子动力学(MD)模拟研究了不同粗糙度纳米孔中液体的自发吸入。介绍了数值模型,并详细讨论了简化假设。采用 Blake 提出的分子动力学理论来描述动态接触角对流体吸入的影响。通过在形成壁的粗粒粒子的随机分布来模拟毛细管粗糙度。将 Lucas-Washburn 方程用作分析模拟得到的吸入曲线的参考。由于 MD 处理的统计性质,采用了一种综合方法对数据进行平均和平滑,以准确定义接触角。结果根据有效流体动力和静态毛细半径及其与粗糙度和润湿性的关系进行了讨论。

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