Project supported by the National Natural Science Foundation of China (Grant Nos. 10375024 and 10775018);the Science Foundation of Hunan Educational Committee of China (Grant Nos. 08B028 and 06B057);the Natural Science Foundation of Hunan Province of China (Grant No. 08jj6043)
With the aid of the critical size of colloidal cluster, the critical volume fraction of phase transition of colloidal system is determined by the principle of entropy maximum and Carnahan-Starling (CS) state equatio...
supported by the National Natural Science Foundation of China (Grant Nos 10702010 and 10775018);the Science Foundations of the Laboratory of Computational Physics and China Academy of Engineering Physics (Grant Nos.2009A0102005 and 2009B0101012)
The description of complex configuration is a difficult issue.We present a powerful technique for cluster identification and characterization.The scheme is designed to treat and analyze the experimental and/or simulat...
supported by the National Natural Science Foundation of China (Grant Nos. 10702010, 10775018, and 10771019);Science Foundation of Laboratory of Computational Physics and Science Foundation of China Academy of Engineering Physics (Grant Nos. 2009A0102005 and 2009B0101012)
The physical fields in porous materials under strong shock wave reaction are very complicated. We simulate such systems using the grain contact material point method. The complex temperature fields in the material are...