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Journal of Enhanced Heat Transfer
Главный редактор: Zhixiong Guo (open in a new tab)
Founding Advisory Editor: Arthur E. Bergles (open in a new tab)
Редактор-основатель: Ralph L. Webb (open in a new tab)

Выходит 8 номеров в год

ISSN Печать: 1065-5131

ISSN Онлайн: 1563-5074

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 2.3 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 1.8 The Immediacy Index is the average number of times an article is cited in the year it is published. The journal Immediacy Index indicates how quickly articles in a journal are cited. Immediacy Index: 0.2 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00037 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.6 SJR: 0.433 SNIP: 0.593 CiteScore™:: 4.3 H-Index: 35

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FORCED CONVECTION IN MHD SLIP FLOW OF ALUMINA-WATER NANOFLUID OVER A FLAT PLATE

Том 23, Выпуск 6, 2016, pp. 487-497
DOI: 10.1615/JEnhHeatTransf.2018025485
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Краткое описание

The heat transfer in magnetohydrodynamic (MHD) slip flow of an incompressible, viscous, electrically conducting, forced convective, and steady alumina-water nanofluid in the presence of a magnetic field over a flat plate has been analyzed. The governing equations are transformed into a set of simultaneous ordinary differential equations using similarity transformation. The set of equations thus obtained has been solved numerically using the adaptive Runge-Kutta method with shooting technique. The effects of the Prandtl number and heat source parameter on velocity distribution, temperature distribution, shear stress, and temperature gradient were depicted graphically and analyzed. Significant changes were observed in the heat transfer rate.

ЦИТИРОВАНО В
  1. V.S. Sampath Kumar, Pai N.P., Suction and injection effect on flow between two plates with reference to Casson fluid model, Multidiscipline Modeling in Materials and Structures, 15, 3, 2019. Crossref

  2. Mohamed R. A., Rida S. Z., Arafa A. A. M., Mubarak M. S., Heat and Mass Transfer in an Unsteady Magnetohydrodynamics Al2O3–Water Nanofluid Squeezed Between Two Parallel Radiating Plates Embedded in Porous Media With Chemical Reaction, Journal of Heat Transfer, 142, 1, 2020. Crossref

  3. Upreti Himanshu, Pandey Alok Kumar, Kumar Manoj, Thermophoresis and suction/injection roles on free convective MHD flow of Ag–kerosene oil nanofluid, Journal of Computational Design and Engineering, 7, 3, 2020. Crossref

  4. Mishra Ashish, Pandey Alok Kumar, Chamkha Ali J., Kumar Manoj, Roles of nanoparticles and heat generation/absorption on MHD flow of Ag–H2O nanofluid via porous stretching/shrinking convergent/divergent channel, Journal of the Egyptian Mathematical Society, 28, 1, 2020. Crossref

  5. Kempannagari Anantha Kumar, Buruju Ramoorthy Reddy, Naramgari Sandeep, Vangala Sugunamma, Effect of Joule heating on MHD non‐Newtonian fluid flow past an exponentially stretching curved surface, Heat Transfer, 49, 6, 2020. Crossref

  6. Sadiq M. Adil, Heat transfer of a nanoliquid thin film over a stretching sheet with surface temperature and internal heat generation, Journal of Thermal Analysis and Calorimetry, 143, 3, 2021. Crossref

  7. Abbas Zameer, Abdal Sohaib, Hussain Nasir, Hussain Fayyaz, Adnan Muhammad, Ali Bagh, Zulqarnain Rana Muhammad, Ali Liaqat, Younas Saba, MHD Boundary Layer Flow and Heat Transfer of Nano fluid over a Vertical Stretching Sheet in the Presence of a Heat Source, Scientific Inquiry and Review, 3, 4, 2019. Crossref

  8. Singh Khilap, Pandey Alok Kumar, Kumar Manoj, Slip flow of micropolar fluid through a permeable wedge due to the effects of chemical reaction and heat source/sink with Hall and ion-slip currents: an analytic approach, Propulsion and Power Research, 9, 3, 2020. Crossref

  9. Joshi Navneet, Pandey Alok K., Upreti Himanshu, Kumar Manoj, Mixed convection flow of magnetic hybrid nanofluid over a bidirectional porous surface with internal heat generation and a higher‐order chemical reaction, Heat Transfer, 50, 4, 2021. Crossref

  10. Dawar Abdullah, Bonyah Ebenezer, Islam Saeed, Alshehri Ahmed, Shah Zahir, Baglio Vincenzo, Theoretical Analysis of Cu-H2O, Al2O3-H2O, and TiO2-H2O Nanofluid Flow Past a Rotating Disk with Velocity Slip and Convective Conditions, Journal of Nanomaterials, 2021, 2021. Crossref

  11. Bakri Badis, Benguesmia Hani, Ketata Ahmed, Diriss Slah, Driss Zied, Numerical Simulation and Experimental Study of Natural Convection Flow in a Test Bench for Solar Air Heaters, International Journal of Engineering Research in Africa, 59, 2022. Crossref

  12. Veera Krishna M., Ameer Ahamad N., Chamkha Ali J., Hall and ion slip effects on unsteady MHD free convective rotating flow through a saturated porous medium over an exponential accelerated plate, Alexandria Engineering Journal, 59, 2, 2020. Crossref

  13. Olayemi Olalekan Adebayo, Al-Farhany Khaled, Ibitoye Segun Emmanuel, Obalalu Adebowale Martins, Mixed Convective Heat Transfer in a Lid-Driven Concentric Trapezoidal Enclosure: Numerical Simulation, International Journal of Engineering Research in Africa, 60, 2022. Crossref

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