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Refinado por: Nome da Publicação: Numerical Heat Transfer. Part A, Applications remover assunto: Reynolds Number remover
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Optimization and analysis of maximum temperature in a battery pack affected by low to high Prandtl number coolants using response surface methodology and particle swarm optimization algorithm
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Optimization and analysis of maximum temperature in a battery pack affected by low to high Prandtl number coolants using response surface methodology and particle swarm optimization algorithm

Afzal, Asif ; Mokashi, Imran ; Khan, Sher Afghan ; Abdullah, Nur Azam ; Azami, Muhammad Hanafi Bin

Numerical heat transfer. Part A, Applications, 2020-11, Vol.79 (5), p.406-435 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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Significance of geothermal viscosity for the magnetic fluid flow between co-rotating porous surfaces
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Significance of geothermal viscosity for the magnetic fluid flow between co-rotating porous surfaces

Sharma, Kushal ; Vijay, Neha ; Ram, Daya ; Animasaun, I. L.

Numerical heat transfer. Part A, Applications, 2023-11, Vol.84 (9), p.980-991 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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3
The Effects of Reynolds and Prandtl Numbers on Flow and Heat Transfer Across Tandem Square Cylinders in the Steady Flow Regime
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The Effects of Reynolds and Prandtl Numbers on Flow and Heat Transfer Across Tandem Square Cylinders in the Steady Flow Regime

Chatterjee, Dipankar ; Biswas, Gautam

Numerical heat transfer. Part A, Applications, 2011-03, Vol.59 (6), p.421-437 [Periódico revisado por pares]

Philadelphia: Taylor & Francis Group

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4
Heat transfer augmentation through convergence angles in a pipe
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Heat transfer augmentation through convergence angles in a pipe

Al-Sammarraie, Ahmed T. ; Vafai, Kambiz

Numerical heat transfer. Part A, Applications, 2017-08, Vol.72 (3), p.197-214 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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5
Conjugate heat transfer analysis of liquid metal turbulent flow through a horizontal channel by LES
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Conjugate heat transfer analysis of liquid metal turbulent flow through a horizontal channel by LES

Satish, N. ; Venkatasubbaiah, K.

Numerical heat transfer. Part A, Applications, 2020-08, Vol.78 (4), p.140-157 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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Scaling analysis and numerical simulation of natural convection from a duct
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Scaling analysis and numerical simulation of natural convection from a duct

Qiao, Manman ; Xu, Feng ; Saha, Suvash C.

Numerical heat transfer. Part A, Applications, 2017-09, Vol.72 (5), p.355-371 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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7
Effect of thermal boundary condition on forced convection from circular cylinders
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Effect of thermal boundary condition on forced convection from circular cylinders

Abdelhady, Mohamed ; Wood, David

Numerical heat transfer. Part A, Applications, 2019-09, Vol.76 (6), p.420-437 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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8
Momentum and heat transfer characteristics of a thin circular disk in Bingham plastic fluids
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Momentum and heat transfer characteristics of a thin circular disk in Bingham plastic fluids

Gupta, Anoop K. ; Mishra, Pragya ; Chhabra, R. P.

Numerical heat transfer. Part A, Applications, 2017-12, Vol.72 (11), p.844-868 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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9
Momentum and Heat Transfer from a Semi-Circular Cylinder to Power-Law Fluids in the Vortex Shedding Regime
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Momentum and Heat Transfer from a Semi-Circular Cylinder to Power-Law Fluids in the Vortex Shedding Regime

Chandra, Avinash ; Chhabra, R. P.

Numerical heat transfer. Part A, Applications, 2013-04, Vol.63 (7), p.489-510 [Periódico revisado por pares]

Philadelphia: Taylor & Francis Group

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10
Mixed Convection in Power-Law Fluids from a Heated Semicircular Cylinder: Effect of Aiding Buoyancy
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Mixed Convection in Power-Law Fluids from a Heated Semicircular Cylinder: Effect of Aiding Buoyancy

Tiwari, Anurag Kumar ; Chhabra, R. P.

Numerical heat transfer. Part A, Applications, 2015-02, Vol.67 (3), p.330-356 [Periódico revisado por pares]

Philadelphia: Taylor & Francis Group

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