Molecular dynamics simulation of waxy deposition in crude oil system

Author(s):  
Kun Wang ◽  
Bo Peng ◽  
Runan Zhao ◽  
Hongmei Xu ◽  
Fei Yan

Understanding the phase transition and deposition behavior of crude oil system with waxy is of great significance to ensure the safe production and transportation of oil. In this paper, molecular dynamics simulation is employed to explore the deposition process of crude oil system with heterogeneous waxy on the solid surface. The results show that in a multiphase system, the morphology of paraffin wax crystals will change correspondingly at different system temperatures. At low-temperature, the paraffin molecules are arranged in an orderly manner, which are easier to form wax crystals, resulting in the density of the system that changes greatly. As the temperature increases, the aggregation of the wax molecules decreases, which makes the fluidity increase, and it is not easy to form wax crystals.

2014 ◽  
Vol 898 ◽  
pp. 41-46
Author(s):  
Xiao Gang Jian ◽  
Yun Hua Zhang

This paper briefly reviews the overseas and domestic research status of the mechanics of hetero film-substrate interface based on molecular dynamics simulation, on this basis building the accurate model of diamond coatings/WC interface and executing the molecular dynamic simulation, exactly measuring the adhesive strength of the diamond coatings/WC interface, finally exploring the influence of interface scales on the adhesive strength of the diamond coatings/WC interface and verifying the feasibility of studying the microscopic structure by molecular dynamics simulation to characterize the mechanical properties of macrostructure, which has important significance for optimizing deposition process of diamond coatings to improve the adhesive strength of the interface.


2002 ◽  
Vol 157 (6-12) ◽  
pp. 799-803 ◽  
Author(s):  
T. Kurobori ◽  
M. Liu ◽  
H. Tsunekawa ◽  
Y. Hirose ◽  
M. Takeuchi

2014 ◽  
Vol 140 (4) ◽  
pp. 044326 ◽  
Author(s):  
Philipp Thaler ◽  
Alexander Volk ◽  
Martin Ratschek ◽  
Markus Koch ◽  
Wolfgang E. Ernst

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