supported by the National Natural Science Foundation of China(Grant No.50874071);the Chinese National Programs for High Technology Research and Development(Grant No.SS2013AA061104);Shanghai Program for Innovative Research Team in Universities,Shanghai Leading Academic Discipline Project(Grant No.S30106);the Shanghai Leading Talents Project and the Key Program of Science and Technology Commission of Shanghai Municipality(Grant No.12160500200)
Due to the complexity of influence factors in the nanoparticles adsorption method and the limitation of data samples, the support vector machine (SVM) was used in the prediction method for the drag reduction effect....
Project supported by the National Natural Science Foundation of China(Grant No.50874071);the Chinese National Programs for High Technology Research and Development(Grant No.SS2013AA061104);the Shanghai Program for Innovative Research Team in Universities,Shanghai Leading Academic Discipline Project(Grant No.S30106)
The hydrophobic nanoparticle (HNP) adsorption is a new technique of drag reduction, which changes the wettability of the porous walls of the core, generates the slip-boundary of the fluid flow and consequently enhan...
the National Natural Science Foundation of China (Grant No. 50874071);the National High Technology Research and Development of China (863 Program,Grant No. 2008AA06Z201);the Key Program of Science and Technology Commission of Shanghai Municipality (Grant No.071605102);the Leading Talent Funding of Shanghai
The apparent slip between solid wall and liquid is studied by using the Lattice Boltzmann Method (LBM) and the Shan-Chen multiphase model in this paper. With a no-slip bounce-back scheme applied to the interface, fl...