By B. Sunden, C. A. Brebbia
This publication includes papers initially provided on the 10th overseas convention on complicated Computational tools and Experimental Measurements in warmth move, prepared into the next subject parts: normal and compelled convection; Advances in computational tools; warmth and mass move; Modelling and experiments; warmth exchanges and gear; Radiation warmth move; strength platforms; Micro and nano scale warmth and mass move; Thermal fabric characterization; Renewable and sustainable strength; power stability and conservation.
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Additional info for Advanced Computational Methods and Experiments in Heat Transfer X
For all divergence angles temperature overshoots are detected, the temperature profiles show that there is an initial increase of temperature up to the maximum value. com, ISSN 1743-3533 (on-line) 18 Advanced Computational Methods in Heat Transfer X depending on the divergence angles. In fact, for θ = 0°, 2° and 5° the overshoot is attained at a lower instant at about 2 s whereas for θ = 10° and 15° it is reached for time not less than 10 s and this time increases increasing the wall spacing bmin.
Figure 10: Axial temperature contour plot at different y* locations in all 5 channels. applied on two walls and thermal insulation on the other two walls. From the structure of gas flow and temperature field it was found that the generated vortex at the entrance of each channel caused disruption of both the hydrodynamic and thermal boundary layer. Further, the total pressure drop was found to be somewhat higher than the values from the literature for laminar flow but lower for a monolithic exchanger where the channels have been arranged in a checkerboard flow arrangement.
Lee, S. , Air Cooling Technology for Electronic Equipment, CRC Press, Boca Raton, FL, 1998. , & Watkins, C. , Numerical solution of natural convection between diverging plates, ASME Paper 84-WA, HT 32, 1983.  Sparrow, E. , Experiments on natural convection in divergent vertical channels and correlation of divergent, convergent, and parallel-channel nusselt numbers, International Journal of Heat and Mass Transfer, 31, pp. 2197–2205, 1988. , Nardini, S. , Air natural convection in a divergent channel with uniformly heated plates, Proceedings, XIX Congresso Nazionale sulla Trasmissione del Calore UIT, pp.