Detail of the heat transfer surface of the aluminum radiator (formed

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Workpiece dimensions and experimental setup. All dimensions are in

chladice-drhovice

Pressure losses on the liquid side for the radiators, air velocity 2 m/s.

PDF) Comparison of a Novel Polymeric Hollow Fiber Heat Exchanger and a Commercially Available Metal Automotive Radiator

Photographs of the obtained torch

Surface roughness under different MQL flow rates and emulsion flood cooling

Ilya ASTROUSKI, Researcher, PhD, Brno University of Technology, Brno, Heat Transfer and Fluid Flow Laboratory

PDF) Comparison of a Novel Polymeric Hollow Fiber Heat Exchanger and a Commercially Available Metal Automotive Radiator

Photographs of the obtained torch

Ilya ASTROUSKI, Researcher, PhD, Brno University of Technology, Brno, Heat Transfer and Fluid Flow Laboratory

Polymers, Free Full-Text

Pressure losses on air side of radiators for coolant flow 60 L/min.

Detail of the heat transfer surface of the aluminum radiator (formed