Development and testing multiple evaporator loop heat pipe utilizing three way T port valve
Afiq Amhar, Nandy Setiadi Djaya Putra
Abstract
Afiq Amhar, Nandy Setiadi Djaya Putra
Abstract
The feasibility and the performance of Multiple Evaporator Loop Heat Pipe (MELHP) has been developed and tested as a robust device for a thermal management system. Aside from the ability to cool multiple heat sources, MELHP also had a built-in function that was known as heat load sharing. This research utilized three-way T port valves on loop heat pipe with two evaporators and one condenser in order to adjust a loop whether using one evaporator or two evaporators. Using modified commercial PTFE as a wick material, MELHP was tested by applied heat load to evaporators in 3 configurations. The test was conducted by applying heat load into the evaporator until the loop reached the maximum temperature, which is 70 °C. It was found that there were some interesting phenomenon between the loop heat pipe with two evaporators (MELHP) and one evaporator (LHP) in matters of heat transport capability.
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The feasibility and the performance of Multiple Evaporator Loop Heat Pipe (MELHP) has been developed and tested as a robust device for a thermal management system. Aside from the ability to cool multiple heat sources, MELHP also had a built-in function that was known as heat load sharing. This research utilized three-way T port valves on loop heat pipe with two evaporators and one condenser in order to adjust a loop whether using one evaporator or two evaporators. Using modified commercial PTFE as a wick material, MELHP was tested by applied heat load to evaporators in 3 configurations. The test was conducted by applying heat load into the evaporator until the loop reached the maximum temperature, which is 70 °C. It was found that there were some interesting phenomenon between the loop heat pipe with two evaporators (MELHP) and one evaporator (LHP) in matters of heat transport capability.
Key concepts: Evaporator, Loop heat pipe, Condenser (optics), Heat pipe, Micro-loop heat pipe, Thermal expansion valve, Loop (graph theory), Heat load