화학공학소재연구정보센터
검색결과 : 728건
No. Article
41 Presenting two new empirical models for calculating the effective dynamic viscosity and thermal conductivity of nanofluids
Garoosi F
Powder Technology, 366, 788, 2020
42 Theoretical analysis of erosion in elbows due to flows with nano- and micro-size particles
Kosinska A, Balakin BV, Kosinski P
Powder Technology, 364, 484, 2020
43 Stability, thermal performance and artificial neural network modeling of viscosity and thermal conductivity of Al2O3-ethylene glycol nanofluids
Li L, Zhai YL, Jin YJ, Wang J, Wang H, Ma MY
Powder Technology, 363, 360, 2020
44 Hybrid nanofluid flow and heat transfer over backward and forward steps: A review
Salman S, Abu Talib AR, Saadon S, Sultan MTH
Powder Technology, 363, 448, 2020
45 An experimental investigation into the effect of particle mixture ratio on specific heat capacity and dynamic viscosity of Al2O3-ZnO hybrid nanofluids
Wole-Osho I, Okonkwo EC, Kavaz D, Abbasoglu S
Powder Technology, 363, 699, 2020
46 Statistical image analysis of uniformity of hybrid nanofluids and prediction models of thermophysical parameters based on artificial neural network (ANN)
Ma MY, Zhai YL, Wang J, Yao PT, Wang H
Powder Technology, 362, 257, 2020
47 The stability, viscosity and thermal conductivity of carbon nanotubes nanofluids with high particle concentration: A surface modification approach
Li XK, Chen WJ, Zou CJ
Powder Technology, 361, 957, 2020
48 Synergistic mechanism of thermal conductivity enhancement and economic analysis of hybrid nanofluids
Ma MY, Zhai YL, Yao PT, Li YH, Wang H
Powder Technology, 373, 702, 2020
49 The effect of multi-wall carbon nanotubes/turbine meter oil nanofluid concentration on the thermophysical properties of lubricants
Pourpasha H, Heris SZ, Mahian O, Wongwises S
Powder Technology, 367, 133, 2020
50 Evaluation of thermal conductivity of deionized water containing SDS-coated NiO nanoparticles under the influences ofconstant and alternative varied magnetic fields
Chen ZX, Liu PP, Zare A, Karimipour A, Abdollahi A, Tlili I
Powder Technology, 367, 143, 2020