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Experimental observations of thermal mixing characteristics in T-junction piping
Journal article   Peer reviewed

Experimental observations of thermal mixing characteristics in T-junction piping

Mei-Shiue Chen, Huai-En Hsieh, Yuh-Ming Ferng and Bau-Shi Pei
Nuclear Engineering and Design, Vol.276, pp.107-114
2014

Abstract

The T-junction piping is frequently used in many industrial applications, including the nuclear plants. For a pressurized water reactor (PWR), the emergency core cooling systems (ECCS) inject cold water into the primary loops if a loss-of-coolant accident (LOCA) happens. Inappropriate mixing of the two streams with significant temperature different at a junction may cause strong thermal stresses to the downstream structures in the reactor vessel. The downstream structures may be damaged. This study is an experimental investigation into the thermal mixing effect occurring at a T-junction. A small-scale test facility was established to observe the mixing effect of flows with different temperature. Thermal mixing effect with different flow rates in the main and branch pipes are investigated by measuring the temperature distribution along the main pipe. In test condition I, we found that lower main pipe flow rate leads to better mixing effect with constant branch pipe flow rate. And in conditions II and III, higher injection flow velocity would enhance the turbulence effect which results in better thermal mixing. The results will be useful for applications with mixing fluids with different temperature. © 2014 Elsevier B.V.

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