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Characterisation of the hydraulic maldistribution in a heat exchanger by local measurement of convective heat transfer coefficients using infrared thermography
Affiliation:1. Air Conditioning and Refrigeration Center, Department of Mechanical Engineering, University of Illinois at Urbana Champaign, 1206 West Green Street, Urbana, IL 61801, USA;2. CTS, 2209 Willow Rd., Urbana, IL, USA
Abstract:A methodology was developed to characterise the heat exchangers' performance decrease due to two-phase flow maldistribution. It consists in measuring the spatial distribution of the local heat transfer coefficients with a rapid, non-invasive and fluid independent method. The method is based on the infrared (IR) thermography measurement of the temperature response to an oscillating heat flux. The amplitude of the measured temperatures is compared to the solution of an analytical model. The problem is solved iteratively to obtain the heat transfer coefficients. This method has been applied to evaluate the uneven phase distribution of an air–water mixture in a compact heat exchanger. The exchanger is composed of seven multiport flat tubes, a vertical downward header and horizontal channels. Experiments were performed for mass flux from 29 kg m−2 s−1 to 116 kg m−2 s−1 and for quality from 0.10 to 0.70.
Keywords:Microchannel  Heat exchanger  Flow distribution  Experimentation  Local heat transfer coefficient  Infrared thermography  Microcanal  Echangeur de chaleur  Distribution de l'écoulement  Expérimentation  Coefficient de transfert de chaleur local  Thermographie infrarouge
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