Hybrid loop heat pipe
View Patent ↗A heat pipe assembly ( 100 ) has a combined reservoir ( 102 ) and evaporator ( 104 ), the evaporator ( 104 ) having ducts of a vapor manifold ( 106 ) that exhausts vapor toward the condenser ( 108 ) instead of opposing the flow of liquid condensate to the reservoir ( 102 ), and the evaporator ( 104 ) having a wick passage that impels the condensate toward the reservoir ( 102 ) instead of opposing the flow of vapor.
1. A heat pipe assembly comprising:
a combined reservoir and evaporator; and a condenser having a condensate artery returning condensate to the reservoir, and further comprising the evaporator having a porous wick; and the condensate artery being coupled to a wick passage extending through the wick.
2. The heat pipe assembly as in claim 1 , further comprising:
the evaporator having a passage as part of the condensate artery.
3. The heat pipe assembly as in claim 1 , further comprising:
the evaporator having a porous wick.
4. The heat pipe assembly as in claim 1 , further comprising:
the evaporator having a wick forming an end of the reservoir.
5. The heat pipe assembly as in claim 1 , further comprising:
a thermo-electric cooler connected to the reservoir and the evaporator.
6. The heat pipe assembly as in claim 1 , further comprising:
a fan supplying supplemental cooling of the reservoir.
7. The heat pipe assembly as in claim 1 , further comprising:
the evaporator having a porous wick and ducts of a vapor manifold that exhausts to the condenser.
8. The heat pipe assembly as in claim 1 , further comprising:
a hollow tube imbedded in the evaporator as part of the artery, and a passage extending from the tube to the reservoir.
9. The heat pipe assembly as in claim 1 , further comprising:
an initially open end of the condenser providing a site for evacuating the heat pipe assembly and for backfilling a quantity of working fluid in the artery.
10. The heat pipe assembly as in claim 1 , further comprising:
the condensate artery being coupled to a hollow pipe that is imbedded in the evaporator.
11. The heat pipe assembly as in claim 1 , further comprising: a secondary wick extending into the reservoir.
12. The heat pipe assembly as in claim 1 , further comprising: a secondary wick unitary with a remainder of the wick, the secondary wick extending into the reservoir.
13. A heat pipe assembly comprising: a combined reservoir and evaporator; and a condenser having a condensate artery returning condensate to the reservoir, and further comprising the condenser having an annular space surrounding the artery, the annular space collecting agglomerated slugs of condensate bridging across the annular space.
14. The heat pipe assembly as in claim 13 , further comprising: the evaporator having a passage as part of the condensate artery.
15. The heat pipe assembly as in claim 13 , further comprising: the evaporator having a porous wick.
16. The heat pipe assembly as in claim 13 , further comprising: the evaporator having a wick forming an end of the reservoir.
17. The heat pipe assembly as in claim 13 , further comprising: a thermoelectric cooler connected to the reservoir and the evaporator.
18. The heat pipe assembly as in claim 13 , further comprising: a fan supplying supplemental cooling of the reservoir.
19. The heat pipe assembly as in claim 13 , further comprising: the evaporator having a porous wick and ducts of a vapor manifold that exhausts to the condenser.
20. The heat pipe assembly as in claim 13 , further comprising: a hollow tube imbedded in the evaporator as part of the artery, and a passage extending from the tube to the reservoir.
21. The heat pipe assembly as in claim 13 , further comprising: an initially open end of the condenser providing a site for evacuating the heat pipe assembly and for backfilling a quantity of working fluid in the artery.
22. The heat pipe assembly as in claim 13 , further comprising: the condensate artery being coupled to a hollow pipe that is imbedded in the evaporator.
23. The heat pipe assembly as in claim 13 , further comprising: a secondary wick extending into the reservoir.
24. The heat pipe assembly as in claim 13 , further comprising: a secondary wick unitary with a remainder of the wick, the secondary wick extending into the reservoir.