Entropy generated nonlinear mixed convective beyond constant characteristics nanomaterial wedge flow

被引:2
|
作者
Razaq, Aneeta [1 ]
Hayat, Tasawar [1 ,2 ,3 ]
Khan, Sohail A. [1 ]
机构
[1] Quaid I Azam Univ, Dept Math, Islamabad 44000, Pakistan
[2] Macau Univ Sci & Technol, Inst Syst Engn, Taipa 9999078, Macao, Peoples R China
[3] Pakistan Acad Sci, G-5-2, Islamabad, Pakistan
关键词
Falkner-Skan wedge; Stagnation point flow; Darcy-Forchheimer relation; Buongiorno's model; Thermal radiation; Entropy generation; FLAT-PLATE; FLUID-FLOW; THERMOPHORESIS;
D O I
10.1016/j.icheatmasstransfer.2024.108000
中图分类号
O414.1 [热力学];
学科分类号
摘要
Background and objective: Nanomaterial flows at present have received much attention of the researchers. Such motivation stems for their utilization in pharmaceutical, industrial, petroleum, manufacturing and engineering applications including regenerative medicine, treatment of cancer, electronic device cooling, solar collector, mineral oil, antimicrobial agents, thermal storage system, transformer cooling and X-imaging etc. Higher thermal energy requirement in several electrical and mechanical systems is desired in recent time due to high advancement of science and technology. For important application here the stagnation point flow due to wedge with nonlinear convection is explored. For porous media, the Darcy-Forchheimer relation is considered. Characteristics of nanofluid is added by utilizing Buongiorno's model. Variable fluid characteristics are under consideration. Applied magnetic field is accounted. Energy expression comprises thermal radiation, Brownian motion, Ohmic heating, thermophoresis and heat generation. First order reaction and entropy rate are considered. Methodology: Nonlinear differential expressions are changed into dimensionless ordinary systems through adequate transformations. The resultant nonlinear ordinary systems are solved through optimal homotopy analysis technique (OHAM). Results: Outcomes for influential variables about temperature, velocity, concentration and entropy rate have been arranged. Here results show that for magnetic field the liquid flow and entropy rate have opposite scenarios. Thermal distribution and concentration have reverse effects for random motion variable while similar effect holds for thermophoresis parameter. Magnetic field and diffusion parameters contribute to augment entropy generation. Higher values of temperature dependent electrical conductivity variable lead to increase entropy rate. Thermal distribution for radiation and Eckert number is similar.
引用
收藏
页数:15
相关论文
共 50 条
  • [41] Dynamics of aluminum oxide and copper hybrid nanofluid in nonlinear mixed Marangoni convective flow with entropy generation: Applications to renewable energy
    Li, Yun-Xiang
    Khan, M. Ijaz
    Gowda, R. J. Punith
    Ali, Arfan
    Farooq, Shahid
    Chu, Yu-Ming
    Khan, Sami Ullah
    CHINESE JOURNAL OF PHYSICS, 2021, 73 : 275 - 287
  • [42] Entropy optimization in bio-convective chemically reactive flow of micropolar nanomaterial with activation energy and gyrotactic microorganisms
    Hussain, Shahid
    Haq, Fazal
    Ghazwani, Hassan Ali
    Saleem, Muzher
    Hussain, Arshad
    CASE STUDIES IN THERMAL ENGINEERING, 2024, 55
  • [43] IMPACT OF NON-DARCY MEDIUM ON MIXED CONVECTIVE FLOW TOWARDS A PLATE CONTAINING MICROPOLARWATER-BASED TiO2 NANOMATERIAL WITH ENTROPY GENERATION
    Zaib, A.
    Haq, R. U.
    Sheikholeslami, M.
    Chamkha, A. J.
    Rashidi, M. M.
    JOURNAL OF POROUS MEDIA, 2020, 23 (01) : 11 - 26
  • [44] Non-similar characteristics of mixed convective slip flow over a wedge with temperature-dependent thermo-physical properties
    Roy, Nepal Chandra
    Roy, Sudharonjon
    Azum, Naved
    Khan, Anish
    Asiri, Abdullah M.
    Rahimi-Gorji, Mohammad
    MODERN PHYSICS LETTERS B, 2019, 33 (36):
  • [45] Thermal Onsets of Viscous Dissipation for Radiative Mixed Convective Flow of Jeffery Nanofluid across a Wedge
    Dadhich, Yogesh
    Alessa, Nazek
    Jain, Reema
    Kaladgi, Abdul Razak
    Loganathan, Karuppusamy
    Devi, V. Radhika
    SYMMETRY-BASEL, 2023, 15 (02):
  • [46] Magnetohydrodynamics mixed convective flow driven through a static wedge including TiO2 nanomaterial with micropolar liquid: Similarity dual solutions via finite difference method
    Zaib, A.
    Haq, R. U.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2019, 233 (16) : 5813 - 5825
  • [47] Entropy Analysis of Mixed Convective Magnetohydrodynamic Flow of a Viscoelastic Fluid over a Stretching Sheet
    Butt, Adnan S.
    Munawar, Sufian
    Ali, Asif
    Mehmood, Ahmer
    ZEITSCHRIFT FUR NATURFORSCHUNG SECTION A-A JOURNAL OF PHYSICAL SCIENCES, 2012, 67 (8-9): : 451 - 459
  • [48] Nonlinear mixed convective nanofluid flow along moving vertical rough plate
    Patil, P. M.
    Kulkarni, M.
    REVISTA MEXICANA DE FISICA, 2020, 66 (02) : 153 - 161
  • [49] Nonlinear Mixed Convective Flow over a Moving Yawed Cylinder Driven by Buoyancy
    Patil, Prabhugouda M.
    Shankar, Hadapad F.
    Sheremet, Mikhail A.
    MATHEMATICS, 2021, 9 (11)
  • [50] Nonlinear Mixed Convection Impact on Radiated Flow of Nanomaterials Subject to Convective Conditions
    M. Waqas
    Ikram Ullah
    T. Hayat
    A. Alsaedi
    Arabian Journal for Science and Engineering, 2021, 46 : 2349 - 2359