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- W2999098679 abstract "This paper deals with the operating characteristics of a loop heat pipe (LHP) under 0.52-m anti-gravity conditions at a constant heat sink temperature of 80 °C. To clarify the operating characteristics, an LHP with a flat evaporator was designed and fabricated. Two kinds of wicks with different characteristics, a steel use stainless (SUS) wick and a polytetrafluoroethylene (PTFE) wick, were used for the experimental tests. During the preheating stage to set the sink temperature of 80 °C, the evaporator and condenser changed the roles passively, and the LHP behaved as a loop thermosyphon (LTS). The proposed LHP had at least the capability of LTS. However, when the heat load was applied to the evaporator, then the LHP was driven by capillary forces (i.e., LHP mode). Under the LHP mode, the steady-state temperature could be predicted using the proposed numerical model. Furthermore, we quantitatively verified that the increase in the heat leak (equivalent to the decrease in the evaporation) leads to an increase in operating temperature and as well to an increase in the minimum start-up heat load using the direct measuring of the flow rate in the LHP. Below the heat source temperature of 180 °C, the LHP with the SUS wick performed 700-W heat transport, and the thermal resistance was 0.073 K/W. For the PTFE wick, we obtained the heat transport of 650 W and the thermal resistance 0.071 K/W." @default.
- W2999098679 created "2020-01-23" @default.
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- W2999098679 date "2020-02-01" @default.
- W2999098679 modified "2023-10-18" @default.
- W2999098679 title "Operating characteristics of an anti-gravity loop heat pipe with a flat evaporator that has the capability of a loop thermosyphon" @default.
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- W2999098679 doi "https://doi.org/10.1016/j.enconman.2019.112431" @default.
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