[1] |
S. I. ABDELSALAM, A. Z. ZAHER.
Biomimetic amelioration of zirconium nanoparticles on a rigid substrate over viscous slime—a physiological approach
[J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(9): 1563-1576.
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[2] |
Fanming CAI, Zhaomiao LIU, Nan ZHENG, Yanlin REN, Yan PANG.
Lattice Boltzmann simulation of the effects of cavity structures and heater thermal conductivity on nucleate boiling heat transfer
[J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(6): 981-996.
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[3] |
Qingkai ZHAO, Longbin TAO, Hang XU.
Analysis of periodic pulsating nanofluid flow and heat transfer through a parallel-plate channel in the presence of magnetic field
[J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(11): 1957-1972.
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[4] |
Hua WU, Xinyi LI, Yajun YU, Zichen DENG.
A novel electron-phonon coupling thermoelasticity with Burgers electronic heat transfer
[J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(11): 1927-1940.
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[5] |
Tianyong YANG, Bofu WANG, Jianzhao WU, Zhiming LU, Quan ZHOU.
Horizontal convection in a rectangular enclosure driven by a linear temperature profile
[J]. Applied Mathematics and Mechanics (English Edition), 2021, 42(8): 1183-1190.
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[6] |
Yanlin REN, Zhaomiao LIU, Yan PANG, Xiang WANG, Yuandi XU.
Lattice Boltzmann simulation of phase change and heat transfer characteristics in the multi-layer deposition
[J]. Applied Mathematics and Mechanics (English Edition), 2021, 42(4): 553-566.
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[7] |
J. MACKOLIL, B. MAHANTHESH.
Optimization of heat transfer in the thermal Marangoni convective flow of a hybrid nanomaterial with sensitivity analysis
[J]. Applied Mathematics and Mechanics (English Edition), 2021, 42(11): 1663-1674.
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[8] |
C. REVNIC, T. GROŞAN, M. SHEREMET, I. POP.
Numerical simulation of MHD natural convection flow in a wavy cavity filled by a hybrid Cu-Al2O3-water nanofluid with discrete heating
[J]. Applied Mathematics and Mechanics (English Edition), 2020, 41(9): 1345-1358.
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[9] |
A. SALEEM, M. N. KIANI, S. NADEEM, A. ISSAKHOV.
Heat transfer and Helmholtz-Smoluchowski velocity in Bingham fluid flow
[J]. Applied Mathematics and Mechanics (English Edition), 2020, 41(8): 1167-1178.
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[10] |
Yingli SHI, Junyun JI, Yafei YIN, Yuhang LI, Yufeng XING.
Analytical transient phase change heat transfer model of wearable electronics with a thermal protection substrate
[J]. Applied Mathematics and Mechanics (English Edition), 2020, 41(11): 1599-1610.
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[11] |
T. G. FANG, F. J. WANG.
Momentum and heat transfer of a special case of the unsteady stagnation-point flow
[J]. Applied Mathematics and Mechanics (English Edition), 2020, 41(1): 51-82.
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[12] |
H. SADAF.
Bio-fluid flow analysis based on heat transfer and variable viscosity
[J]. Applied Mathematics and Mechanics (English Edition), 2019, 40(7): 1029-1040.
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[13] |
M. IMTIAZ, F. SHAHID, T. HAYAT, A. ALSAEDI.
Melting heat transfer in Cu-water and Ag-water nanofluids flow with homogeneous-heterogeneous reactions
[J]. Applied Mathematics and Mechanics (English Edition), 2019, 40(4): 465-480.
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[14] |
Qiang YU, Hang XU.
Novel wavelet-homotopy Galerkin technique for analysis of lid-driven cavity flow and heat transfer with non-uniform boundary conditions
[J]. Applied Mathematics and Mechanics (English Edition), 2018, 39(12): 1691-1718.
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[15] |
Caixi LIU, Shuai TANG, Yuhong DONG.
Effect of inertial particles with different specific heat capacities on heat transfer in particle-laden turbulent flow
[J]. Applied Mathematics and Mechanics (English Edition), 2017, 38(8): 1149-1158.
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