1 |
Increasing polarization-dependent SERS effects by optimizing the axial symmetry of plasmonic nanostructures Zhu AN, Zhang F, Gao RX, Zhao XY, Chen L, Zhang YJ, Zhang XL, Wang YX Applied Surface Science, 494, 87, 2019 |
2 |
Shape evolution of a water drop in asphaltene solution under weak DC electric fields Mhatre S, Simon S, Sjoblom J Chemical Engineering Research & Design, 141, 540, 2019 |
3 |
Numerical analyses and optimization of tubular thermochemical heat storage reactors using axisymmetric thermal lattice Boltzmann model Pan ZH, Yan J, Zhao CY Chemical Engineering Science, 195, 737, 2019 |
4 |
Low Cost Image Processing of Bunsen Flame Photography for Estimation of Flame Speeds Souflas K, Psarakis EZ, Koutmos P, Egolfopoulos FN Combustion Science and Technology, 191(7), 1123, 2019 |
5 |
Performance analysis of axisymmetric floating energy harvesters and influences of parameters and shape variation Gao H, Liang RZ International Journal of Energy Research, 43(6), 2057, 2019 |
6 |
Axisymmetric lattice Boltzmann model for multiphase flows with large density ratio Liang H, Li Y, Chen JX, Xu JR International Journal of Heat and Mass Transfer, 130, 1189, 2019 |
7 |
Axisymmetric lattice Boltzmann simulation of the heat-exchanger method-based sapphire crystal growth Xu XC, Dai B, Yang L, Han JC, Zhu JQ International Journal of Heat and Mass Transfer, 129, 299, 2019 |
8 |
Cascaded lattice Boltzmann method based on central moments for axisymmetric thermal flows including swirling effects Hajabdollahi F, Premnath KN, Welch SWJ International Journal of Heat and Mass Transfer, 128, 999, 2019 |
9 |
Modeling Leidenfrost drops over heated liquid substrates Qiao L, Zeng Z, Xie HQ, Liu H, Zhang LQ International Journal of Heat and Mass Transfer, 128, 1296, 2019 |
10 |
Near-infrared measurement of axisymmetric temperature field formed by free convection from a 1-mm-diameter heating sphere in water Kakuta N, Arakawa Y, Kyoda M, Miyake T, Mishiba K, Kondo K International Journal of Heat and Mass Transfer, 137, 847, 2019 |