发明名称 DEMAND-BASED CHARGING OF A HEAT PIPE
摘要 A heat pipe includes one or more reservoirs of liquid that are closed at lower temperatures and open at higher temperatures. The opening of the reservoirs at higher temperatures caused by higher power levels dynamically increases the amount of liquid in the heat pipe, which increases performance of the heat pipe at higher power levels. As the heat pipe cools, the liquid condenses and flows back into the reservoirs. As the heat pipe continues to cool, the reservoirs close. The result is a heat pipe that is more efficient at lower power levels and still maintains high efficiency at higher power levels due to the demand-based charging of the liquid based on temperature.
申请公布号 US2017102189(A1) 申请公布日期 2017.04.13
申请号 US201615044375 申请日期 2016.02.16
申请人 International Business Machines Corporation 发明人 Anderl William J.;Elison Bret P.;Mann Phillip V.;Sinha Arvind K.
分类号 F28D15/06;F28F3/02;F16K31/00;F28D15/02 主分类号 F28D15/06
代理机构 代理人
主权项 1. A method for transferring heat from a heat source using a heat pipe, the method comprising: thermally coupling the heat pipe to the heat source, the heat pipe comprising: an interface for thermally coupling the heat source to the heat pipe;a substantially horizontal portion overlying the interface;a reservoir in a lower portion of the substantially horizontal portion that contains liquid; anda temperature-actuated valve overlying the reservoir, wherein the temperature-actuated valve seals the liquid in the reservoir when the temperature is below an actuation temperature and unseals the liquid in the reservoir when the temperature is above the actuation temperature; the heat source heating the heat pipe, causing the temperature in the substantially horizontal portion to rise to the actuation temperature; in response to reaching the actuation temperature, the temperature-actuated valve unseals the reservoir, allowing the liquid to pass into the substantially horizontal portion; and as temperature in the substantially horizontal portion falls, the liquid condenses and flows by the force of gravity through the temperature-actuated valve into the reservoir, and when the temperature falls to the actuation temperature, the temperature-actuated valve seals the liquid in the reservoir.
地址 Armonk NY US