Acknowledgement
The authors extend their appreciation to the Deanship of Research and Graduate Studies at King Khalid University for funding this work through Large Research Project under grant number RGP2/95/45.
References
- Abo-zaid, O.A., Mohamed, R.A., Hady, F.M. and Mahdy, A. (2021), "MHD Powell-Eyring dusty nanofluid flow due to stretching surface with heat flux boundary condition", J. Egypt. Mathe. Soc., 29(1), 1-14. https://doi.org/10.1186/s42787-021-00123-w
- Agrawal, P., Dadheech, P.K., Jat, R.N., Bohra, M., Nisar, K.S. and Khan, I. (2020), "Lie similarity analysis of MHD flow past a stretching surface embedded in porous medium along with imposed heat source/sink and variable viscosity", J. Mater. Res. Technol., 9(5), 10045-10053. https://doi.org/10.1016/j.jmrt.2020.07.023
- Ahmed, S.E. and Rashed, Z.Z. (2021), "Magnetohydrodinamic dusty hybrid nanofluid peristaltic flow in curved channels", Thermal Sci., 25(6 Part A), 4241-4255. https://doi.org/10.2298/TSCI191014144
- Akbas, S.D. (2018), "Forced vibration analysis of cracked nanobeams", J. Brazil. Soc. Mech. Sci. Eng., 40(8), 1-11. https://doi.org/10.1007/s40430-018-1315-1
- Akbas, S.D. (2019), "Axially forced vibration analysis of cracked a nanorod", J. Computat. Appl. Mech., 50(1), 63-68. https://doi.org/10.22059/jcamech.2019.281285.392
- Ali, G., Ali, F., Khan, A., Ganie, A.H. and Khan, I. (2022), "A generalized magnetohydrodynamic two-phase free convection flow of dusty Casson fluid between parallel plates", Case Stud. Thermal Eng., 29, 101657. https://doi.org/10.1016/j.csite.2021.101657
- Alijani, M. and Bidgoli, M.R. (2018), "Agglomerated SiO2 nanoparticles reinforced-concrete foundations based on higher order shear deformation theory: Vibration analysis", Adv. Concrete Constr., Int. J., 6(6), 585-610. https://doi.org/10.12989/acc.2018.6.6.585
- Andersson, H.I. (2002), "Slip flow past a stretching surface", Acta Mechanica, 158, 121-125. http://dx.doi.org/10.1007/BF01463174
- Asghar, S., Naeem, M.N., Khadimallah, M.A., Hussain, M., Iqbal, Z. and Tounsi, A. (2020a), "Effect of chiral structure for free vibration of DWCNTs: Modal analysis", Adv. Concrete Constr., Int. J., 9(6), 577-588. https://doi.org/10.12989/acc.2020.9.6.577
- Asghar, S., Khadimallah, M.A., Naeem, M.N., Ghamkhar, M., Khedher, K.M., Hussain, M., Bouzgarrou, S.M., Ali, Z., Iqbal, Z., Mahmoud, S.R. and Algarni, A. (2020b), "Small scale computational vibration of double-walled CNTs: Estimation of nonlocal shell model", Adv. Concrete Constr., Int. J., 10(4), 345-355. https://doi.org/10.12989/acc.2020.10.4.345
- Ayodeji, F., Tope, A. and Samuel, O. (2019), "Magneto-Hydrodynamics (MHD) Bioconvection Nanofluid Slip Flow over a Stretching Sheet with Microorganism Concentration and Bioconvection Peclet Number Effects", Am. J. Mech. Industr. Eng, 4(6), 86-95. https://doi.org/10.11648/j.ajmie.20190406.11
- Bai, B., Chen, J., Zhang, B. and Wang, H. (2024), "Migration trajectories and blocking effect of the fine particles in porous media based on particle flow simulation", AIP Advances, 14(4), 045036. https://doi.org/10.1063/5.0199046
- Christopher, C.G., Pachaivannan, P. and Elamparithi, P.N. (2023), "Study on self-compacting polyester fiber reinforced concrete and strength prediction using ANN", Adv. Concrete Constr., Int. J., 15(2), 85-96.
- Civalek, O. (2020), "Vibration of functionally graded carbon nanotube reinforced quadrilateral plates using geometric transformation discrete singular convolution method", Int. J. Numer. Methods Eng., 121(5), 990-1019. https://doi.org/10.1002/nme.6254
- Crane, L.J. (1970), "Flow past a stretching plate", Zeitschrift fur angewandte Mathematik und Physik ZAMP, 21(4), 645-647. https://doi.org/10.1007/bf01587695
- Demir, A.D. and Livaoglu, R. (2019), "The role of slenderness on the seismic behavior of ground-supported cylindrical silos", Adv. Concrete Constr., Int. J., 7(2), 65-74. https://doi.org/10.12989/acc.2019.7.2.065
- Devi, C.S., Takhar, H.S. and Nath, G. (1986), "Unsteady, three-dimensional, boundary-layer flow due to a stretching surface", Int. J. Heat Mass Transfer, 29(12), 1996-1999.
- Elsamak, G. and Fayed, S. (2021), "Flexural strengthening of RC beams using externally bonded aluminum plates: An experimental and numerical study", Adv. Concrete Constr., Int. J., 11(6), 481-492. https://doi.org/10.12989/acc.2021.11.6.481
- Gao, Q., Ding, Z. and Liao, W. (2022), "Effective elastic properties of irregular auxetic structures", Compos. Struct., 287, 115269. https://doi.org/10.1016/j.compstruct.2022.115269
- Hamad, M.A.A., Uddin, M.J. and Ismail, A.M. (2012), "Investigation of combined heat and mass transfer by Lie group analysis with variable diffusivity taking into account hydrodynamic slip and thermal convective boundary conditions", Int. J. Heat Mass Transfer, 55(4), 1355-1362. https://doi.org/10.1016/j.ijheatmasstransfer.2011.08.043
- Han, Q. and Chu, F. (2015), "Nonlinear dynamic model for skidding behavior of angular contact ball bearings", J. Sound Vib., 354, 219-235. https://doi.org/10.1016/j.jsv.2015.06.008
- Han, Q., Li, X. and Chu, F. (2018), "Skidding behavior of cylindrical roller bearings under time-variable load conditions", Int. J. Mech. Sci., 135, 203-214. https://doi.org/10.1016/j.ijmecsci.2017.11.013
- Hassan, H.S. (2015), "Symmetry analysis for MHD viscous flow and heat transfer over a stretching sheet", Appl. Mathe., 6(01), 78-94.
- Hussain, M. (2024a), Small-scale Computational Vibration of Carbon Nanotubes: Composite Structure, 978103265622.
- Hussain, M. (2024b), Small-scale Computational Vibration of Carbon Nanotubes: Composite Structure, 9781032656229.
- Iqbal, W., Jalil, M., Khadimallah, M.A., Ayed, H., Naeem, M.N., Hussain, M., Bouzgarrou, S.M., Mahmoud, S.R., Ghandourah, E., Taj, M. and Tounsi, A. (2020), "Runge-Kutta method for flow of dusty fluid along exponentially stretching cylinder", Steel Compos. Struct., Int. J., 36(5), 603-615. https://doi.org/10.12989/scs.2020.36.5.603
- Jiang, Z., Shi, H., Tang, X. and Qin, J. (2023), "Recent advances in droplet microfluidics for single-cell analysis", TrAC Trends Analyt. Chem., 159, 116932. https://doi.org/10.1016/j.trac.2023.116932
- Khadimallah, M.A., Safeer, M., Taj, M., Ayed, H., Hussain, M., Bouzgarrou, S.M., Mahmoud, S.R., Ahmad, M. and Tounsi, A. (2020), "The effects of the surrounding viscoelastic media on the buckling behavior of single microfilament within the cell: A mechanical model", Adv. Concrete Constr., Int. J., 10(2), 141-149. https://doi.org/10.12989/acc.2020.10.2.141
- Kumar, T.S. (2021), "Hybrid nanofluid slip flow and heat transfer over a stretching surface", Partial Different. Eq. Appl. Mathe., 4, 100070. https://doi.org/10.1016/j.padiff.2021.100070
- Kumaran, V. and Ramanaiah, G. (1996), "A note on the flow over a stretching sheet", Acta Mechanica, 116(1-4), 229-233. https://doi.org/10.1007/BF01171433
- Luo, J., Wang, G., Li, G. and Pesce, G. (2022), "Transport infrastructure connectivity and conflict resolution: a machine learning analysis", Neural Comput. Applicat., 34(9), 6585-6601. https://doi.org/10.1007/s00521-021-06015-5
- Majeed, A., Zeeshan, A. and Gorla, R.S.R. (2018), "Convective heat transfer in a dusty ferromagnetic fluid over a stretching surface with prescribed surface temperature/heat flux including heat source/sink", J. Nat. Sci. Found. Sri Lanka, 46(3). https://doi.org/10.4038/jnsfsr.v46i3.8492
- Makinde, O.D. and Aziz, A. (2010), "MHD mixed convection from a vertical plate embedded in a porous medium with a convective boundary condition", Int. J. Thermal Sci., 49(9), 1813-1820. https://doi.org/10.1016/j.ijthermalsci.2010.05.015
- Megahed, A.M. and Abdel-Rahman, R.G. (2019), "Lie group analysis of heat flux effect on MHD second slip flow for a slightly rarefied gas past a stretching sheet with heat generation", Tech. Sci./Univ. Warmia Mazury in Olsztyn, 22(1), 45-59.
- Mesbah, H.A. and Benzaid, R. (2017), "Damage-based stress-strain model of RC cylinders wrapped with CFRP composites", Adv. Concrete Constr., Int. J., 5(5), 539-561. https://doi.org/10.12989/acc.2017.5.5.539
- Metri, P.G., Guariglia, E. and Silvestrov, S. (2017), "Lie group analysis for MHD boundary layer flow and heat transfer over stretching sheet in presence of viscous dissipation and uniform heat source/sink", In: AIP Conference Proceedings, Vol. 1798, No. 1, p. 020096.
- Mustafa, M., Hina, S., Hayat, T. and Alsaedi, A. (2013), "Slip effects on the peristaltic motion of nanofluid in a channel with wall properties", J. Heat Transfer, 135(4), p. 041701. https://doi.org/10.1115/1.4023038
- Rajeswari, V. and Nath, G. (1992), "Unsteady flow over a stretching surface in a rotating fluid", Int. J. Eng. Sci., 30(6), 747-756. https://doi.org/10.1016/0020-7225(92)90104-O
- Saif, R.S., Hayat, T., Ellahi, R., Muhammad, T. and Alsaedi, A. (2018), "Darcy-Forchheimer flow of nanofluid due to a curved stretching surface", Int. J. Numer. Methods Heat Fluid Flow, 29(1), 2-20. https://doi.org/10.1108/HFF-08-2017-0301
- Sakiadis, B.C. (1961), "Boundary-layer behavior on continuous solid surfaces: I. Boundary-layer equations for two-dimensional and axisymmetric flow", AIChE Journal, 7(1), 26-28. https://doi.org/10.1002/aic.690070108
- Samadvand, H. and Dehestani, M. (2020), "A stress-function variational approach toward CFRP-concrete interfacial stresses in bonded joints", Adv. Concrete Constr., Int. J., 9(1), 43-54. https://doi.org/10.12989/acc.2020.9.1.043
- Shah, Z., Kumam, P. and Deebani, W. (2020), "Radiative MHD Casson Nanofluid Flow with Activation energy and chemical reaction over past nonlinearly stretching surface through Entropy generation", Scientific Reports, 10(1), 1-14. https://www.nature.com/articles/s41598-020-61125-9
- Sharif, H., Naeem, M.N., Khadimallah, M.A., Ayed, H., Bouzgarrou, S.M., Al Naim, A.F., Hussain, S., Hussain, M., Iqbal, Z. and Tounsi, A. (2020), "Energy effects on MHD flow of Eyring's nanofluid containing motile microorganism", Adv. Concrete Constr., Int. J., 10(4), 357-367. https://doi.org/10.12989/acc.2020.10.4.357
- Shu, X., Li, J. and Shen, M. (2022), "A coupled 2D RBSM-Voronoi model for simulating fracture behaviors of plain concrete components", Adv. Concrete Constr., Int. J., 14(6), 391-400. https://doi.org/10.12989/acc.2022.14.6.391
- Siddiqa, S., Begum, N., Saleem, S., Hossain, M.A. and Gorla, R. S.R. (2016), "Numerical solutions of nanofluid bioconvection due to gyrotactic microorganisms along a vertical wavy cone", Int. J. Heat Mass Transfer, 101, 608-613. https://doi.org/10.1016/j.ijheatmasstransfer.2016.05.076
- Su, F.Q., He, X.L., Dai, M.J., Yang, J.N., Hamanaka, A., Yu, Y.H., Li, W. and Li, J.Y. (2023), "Estimation of the cavity volume in the gasification zone for underground coal gasification under different oxygen flow conditions", Energy, 285, 129309. https://doi.org/10.1016/j.energy.2023.129309
- Sun, L., Liang, T., Zhang, C. and Chen, J. (2023), "The rheological performance of shear-thickening fluids based on carbon fiber and silica nanocomposite", Phys. Fluids, 35(3), 32002. https://doi.org/10.1063/5.0138294
- Sun, L., Wang, G. and Zhang, C. (2024), "Experimental investigation of a novel high performance multi-walled carbon nano-polyvinylpyrrolidone/silicon-based shear thickening fluid damper", J. Intell. Mater. Syst. Struct., 35(6), 661-672. https://doi.org/10.1177/1045389X231222999
- Vajravelu, K. and Hadjinicolaou, A. (1993), "Heat transfer in a viscous fluid over a stretching sheet with viscous dissipation and internal heat generation", Int. Commun. Heat Mass Transfer, 20(3), 417-430. https://doi.org/10.1016/0735-1933(93)90026-R
- Wang, C.Y. (1984), "The three-dimensional flow due to a stretching flat surface", Phys. Fluids, 27(8), 1915-1917. http://dx.doi.org/10.1063/1.864868
- Wang, Z., Wang, S., Wang, X. and Luo, X. (2023a), "Permanent Magnet-Based Superficial Flow Velometer With Ultralow Output Drift", IEEE Transact. Instrument. Measur., 72, 1-12. https://doi.org/10.1109/TIM.2023.3304692
- Wang, Q., Li, P., Rocca, P., Li, R., Tan, G., Hu, N. and Xu, W. (2023b), "Interval-based tolerance analysis method for petal reflector antenna with random surface and deployment errors", IEEE Transact. Antennas Propag., 71(11), 8556-8569. https://doi.org/10.1109/TAP.2023.3314097
- Wang, W., Jin, Y., Mu, Y., Zhang, M. and Du, J. (2023c), "A novel tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces", Virtual Phys. Prototyp, 18(1), e2203701. https://doi.org/10.1080/17452759.2023.2203701
- Wang, Z., Wang, S., Wang, X. and Luo, X. (2024a), "Underwater moving object detection using superficial electromagnetic flow velometer array based artificial lateral line system", IEEE Sensors J., 24(8), 12104-12121. https://doi.org/10.1109/JSEN.2024.3370259
- Wang, Z., Zhao, Q., Yang, Z., Liang, R. and Li, Z. (2024b), "High-speed photography and particle image velocimetry of cavitation in a Venturi tube", Phys. Fluids, 36(4), 045147. https://doi.org/10.1063/5.0203411
- Wu, H., Bai, B. and Liu, J. (2024), "Temperature-driven coupled transport of pollutants and suspended particles established by granular thermodynamics", Int. J. Heat Mass Transfer, 228, 125645. https://doi.org/10.1016/j.ijheatmasstransfer.2024.125645
- Zhang, Y., Cheng, M., Liu, X., Rong, G., Sheng, Z., Shen, D., Wu, K. and Wang, J. (2024), "The influence of plug nozzle and Laval nozzle on the flow field and performance of non-premixed rotating detonation combustor", Phys. Fluids, 36(5), 056107. https://doi.org/10.1063/5.0207508