Items where Author is "Iyi, Draco"

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Number of items: 9.

Iyi, Draco, Hasan, Reaz and Penlington, Roger (2018) Experimental and numerical study of Buoyancy-driven low turbulence flow in rectangular enclosure partially filled with isolated solid blockages. International Journal of Heat and Mass Transfer, 127. pp. 534-545. ISSN 0017-9310

Iyi, Draco, Hasan, Reaz and Penlington, Roger (2015) Effect of Emissivity on the Heat and Mass Transfer of Humid Air in a Cavity Filled with Solid Obstacles. Numerical Heat Transfer, Part A: Applications, 67 (5). pp. 531-546. ISSN 1040-7782

Iyi, Draco and Hasan, Reaz (2015) Natural convection flow and heat transfer in an enclosure containing staggered arrangement of blockages. Procedia Engineering, 105. pp. 176-183. ISSN 1877-7058

Iyi, Draco, Hasan, Reaz, Penlington, Roger and Underwood, Chris (2014) Double Skin Façade: Modelling Technique and Influence of Venetian Blinds on the Airflow and Heat Transfer. Applied Thermal Engineering, 71 (1). pp. 219-229. ISSN 1359-4311

Iyi, Draco, Hasan, Reaz and Penlington, Roger (2014) Effect of Blockages on Natural Convection Turbulent Airflow and Heat Transfer in a Cavity. In: CONV-14: International Symposium on Convective Heat and Mass Transfer, June 8 - 13, 2014, Kusadasi, Turkey.

Iyi, Draco (2013) A Study on Buoyancy Driven Turbulent Flow Associated with Radiation in Cavities Partially Filled with Blockages. Doctoral thesis, Northumbria University.

Iyi, Draco, Hasan, Reaz and Penlington, Roger (2013) Numerical simulation of 2D turbulent natural convection of humid air in a cavity filled with solid objects. Procedia Engineering, 56. pp. 538-543. ISSN 1877-7058

Iyi, Draco, Hasan, Reaz and Penlington, Roger (2012) Interaction effects between surface radiation and double-diffusive turbulent natural convection in an enclosed cavity filled with solid obstacles. In: International Symposium on Advances in Computational Heat Transfer ICHMT, 1-6 July 2012, Bath, England.

Iyi, Draco, Hasan, Reaz and Penlington, Roger (2011) Numerical analysis of the influence of thermal boundary condition and surface emissivity on the flow and heat transfer in turbulent buoyancy driven flow. In: The Asian Symposium of Computational Heat Transfer and Fluid Flow, 22-26 September 2011, Kyoto University, Kyoto, Japan.

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