Jingquan Zhanga,b, Kun Zhanga,b,*
Frontiers in Heat and Mass Transfer, Vol.17, pp. 1-6, 2021, DOI:10.5098/hmt.17.14
Abstract Detailed numerical analysis is presented for flow and heat transfer in sinusoidal-corrugated parallel channel with six discrete heat sources placed under
the bottom surface. Three dimensional numerical model are applied for simulating the flow and heat transfer process and the Colburn j factor is applied
to evaluate the overall performance of the corrugated liquid cooled channel. The results show that the maximum temperature in the middle section
decreases and the pressure loss increases as the wavelength of sinusoidal surface on the bottom decreases, while the increasing wave amplitude of
corrugated surface can enhance the heat More >