Applied Mathematics and Mechanics (English Edition) ›› 2025, Vol. 46 ›› Issue (7): 1383-1402.doi: https://doi.org/10.1007/s10483-025-3271-6
收稿日期:
2025-01-24
修回日期:
2025-05-11
发布日期:
2025-06-30
M. USMAN1, M. HAMID2,3,†(), W. A. KHAN4, R. U. HAQ5
Received:
2025-01-24
Revised:
2025-05-11
Published:
2025-06-30
Contact:
M. HAMID
E-mail:mhamid@pku.edu.cn
Supported by:
中图分类号:
. [J]. Applied Mathematics and Mechanics (English Edition), 2025, 46(7): 1383-1402.
M. USMAN, M. HAMID, W. A. KHAN, R. U. HAQ. Hydrodynamical characterization of nanofluidic flow driven by forced convection via a four-sided lid-driven cavity[J]. Applied Mathematics and Mechanics (English Edition), 2025, 46(7): 1383-1402.
[6] | BHOPALAM, S. R., PERUMAL, D. A., and YADAV, A. K. Computational appraisal of fluid flow behavior in two-sided oscillating lid-driven cavities. International Journal of Mechanical Sciences, 196, 106303 (2021) |
[7] | SOOMRO, F. A., HAMID, M., HUSSAIN, S. T., and HAQ, R. U. Constructional design and mixed convection heat transfer inside lid-driven semicircular cavity. European Physical Journal Plus, 137(7), 781 (2022) |
[8] | KHAN, Z. H., KHAN, W. A., QASIM, M., ALHARBI, S. O., HAMID, M., and DU, M. Hybrid nanofluid flow around a triangular-shaped obstacle inside a split lid-driven trapezoidal cavity. European Physical Journal Special Topics, 231(13), 2749–2759 (2022) |
[9] | AHMED, S. E., RAIZAH, Z., ARAFA, A. A. M., and HUSSEIN, S. A. FEM treatments for MHD highly mixed convection flow within partially heated double-lid driven odd-shaped enclosures using ternary composition nanofluids. International Communications in Heat and Mass Transfer, 145, 106854 (2023) |
[10] | AHMED, S., CHEN, Z. M., XU, H., and ISHAQ, M. Mixed convection flow in a square lid-driven cavity subject to inclined magnetic field with highly accurate wavelet-homotopy solutions. Computers & Mathematics with Applications, 162, 33–51 (2024) |
[11] | TAYEBI, T. and CHAMKHA, A. J. Magnetohydrodynamic natural convection heat transfer of hybrid nanofluid in a square enclosure in the presence of a wavy circular conductive cylinder. Journal of Thermal Science and Engineering Applications, 12(3), 031009 (2020) |
[12] | HASHEMI-TILEHNOEE, M., DOGONCHI, A. S., SEYYEDI, S. M., CHAMKHA, A. J., and GANJI, D. D. Magnetohydrodynamic natural convection and entropy generation analyses inside a nanofluid-filled incinerator-shaped porous cavity with wavy heater block. Journal of Thermal Analysis and Calorimetry, 141(5), 2033–2045 (2020) |
[13] | SEYYEDI, S. M., DOGONCHI, A. S., HASHEMI-TILEHNOEE, M., GANJI, D. D., and CHAMKHA, A. J. Second law analysis of magneto-natural convection in a nanofluid filled wavy-hexagonal porous enclosure. International Journal of Numerical Methods for Heat & Fluid Flow, 30(11), 4811–4836 (2020) |
[14] | ALSABERY, A. I., TAYEBI, T., KADHIM, H. T., GHALAMBAZ, M., HASHIM, I., and CHAMKHA, A. J. Impact of two-phase hybrid nanofluid approach on mixed convection inside wavy lid-driven cavity having localized solid block. Journal of Advanced Research, 30, 63–74 (2021) |
[15] | CHAMKHA, A. J., HUSSAIN, S. H., and ABD-AMER, Q. R. Mixed convection heat transfer of air inside a square vented cavity with a heated horizontal square cylinder. Numerical Heat Transfer, Part A: Applications, 59(1), 58–79 (2011) |
[1] | ULLAH, M. Z., HUSSAIN, S. T., HAQ, R. U., ALZAHRANI, A. K., and MALLAWI, F. Thermal energy performance due to convection process of nanofluid in a porous medium due to split lid motion in a right triangular enclosure. Journal of Computational Design and Engineering, 9(3), 890–906 (2022) |
[2] | BHATTACHARYA, M., BASAK, T., OZTOP, H. F., and VAROL, Y. Mixed convection and role of multiple solutions in lid-driven trapezoidal enclosures. International Journal of Heat and Mass Transfer, 63, 366–388 (2013) |
[3] | THAKUR, M. S. H., ISLAM, M., UL KARIM, A., SAHA, S., and HASAN, M. N. Numerical study of laminar mixed convection in a Cu-water nanofluid filled lid-driven square cavity with an isothermally heated cylinder. AIP Conference Proceedings, 2121, 070017 (2019) |
[4] | KHAN, Z. H., KHAN, W. A., HAMID, M., and LIU, H. T. Finite element analysis of hybrid nanofluid flow and heat transfer in a split lid-driven square cavity with Y-shaped obstacle. Physics of Fluids, 32(9), 093609 (2020) |
[5] | ALSABERY, A. I., SHEREMET, M. A., SHEIKHOLESLAMI, M., CHAMKHA, A. J., and HASHIM, I. Magnetohydrodynamics energy transport inside a double lid-driven wavy-walled chamber: impacts of inner solid cylinder and two-phase nanoliquid approach. International Journal of Mechanical Sciences, 184, 105846 (2020) |
[16] | ALSABERY, A. I., MOHEBBI, R., CHAMKHA, A. J., and HASHIM, I. Effect of local thermal non-equilibrium model on natural convection in a nanofluid-filled wavy-walled porous cavity containing inner solid cylinder. Chemical Engineering Science, 201, 247–263 (2019) |
[17] | KHAN, Z. H., KHAN, W. A., SHEREMET, M. A., HAMID, M., and DU, M. Irreversibilities in natural convection inside a right-angled trapezoidal cavity with sinusoidal wall temperature. Physics of Fluids, 33(8), 083612 (2021) |
[18] | HAMID, M., KHAN, Z. H., KHAN, W. A., and TIAN, Z. F. Natural convection inside a trapezoidal cavity under multidirectional magnetic impacts: finite element characterization. Physics of Fluids, 35(9), 093618 (2023) |
[19] | HAMID, M., USMAN, M., KHAN, W. A., HAQ, R. U., and TIAN, Z. F. Natural convection and multidirectional magnetic field inside a square shaped cavity with sinusoidal temperature and heated/cold blocks. International Communications in Heat and Mass Transfer, 152, 107291 (2024) |
[20] | HAMID, M., USMAN, M., KHAN, W. A., HAQ, R. U., and TIAN, Z. F. Characterizing natural convection and thermal behavior in a square cavity with curvilinear corners and central circular obstacles. Applied Thermal Engineering, 248, 123133 (2024) |
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