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Presenting two new empirical models for calculating the effective dynamic viscosity and thermal conductivity of nanofluids Garoosi F Powder Technology, 366, 788, 2020 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |