TY - JOUR
T1 - Investigation on thermal performance of a high-temperature heat-pipe thermal protection structure
AU - Xie, G.
AU - Ji, T.
AU - Sunden, B.
AU - Qin, J.
AU - Lorenzini, G.
N1 - Publisher Copyright:
© 2016, Pleiades Publishing, Ltd.
PY - 2016/7/1
Y1 - 2016/7/1
N2 - Sharp leading edges with a millimeter-scale radius are required for hypersonic vehicles from aerodynamic reasons. However, with the leading edges being so sharp, stagnation regions at wing and tail leading edges suffer a hostile thermal environment. Therefore, a high-temperature heat pipe is considered to be integrated into the structure of the leading edge to reduce the temperature of the stagnation point. In this paper, a superalloy-refractory composite-container-“wall” combined with the wick and working fluid structure is proposed, which is proved to be a feasible design of a heat pipe for the semi-passive thermal protection system (TPS). The effects of different material of the exterior surface on the temperature distributions are investigated. The effect of the half wedge angle, the design length and porosity of the wick is also investigated to find the effect of the geometry of the structure of the leading edge on the operation of the heat pipe.
AB - Sharp leading edges with a millimeter-scale radius are required for hypersonic vehicles from aerodynamic reasons. However, with the leading edges being so sharp, stagnation regions at wing and tail leading edges suffer a hostile thermal environment. Therefore, a high-temperature heat pipe is considered to be integrated into the structure of the leading edge to reduce the temperature of the stagnation point. In this paper, a superalloy-refractory composite-container-“wall” combined with the wick and working fluid structure is proposed, which is proved to be a feasible design of a heat pipe for the semi-passive thermal protection system (TPS). The effects of different material of the exterior surface on the temperature distributions are investigated. The effect of the half wedge angle, the design length and porosity of the wick is also investigated to find the effect of the geometry of the structure of the leading edge on the operation of the heat pipe.
UR - http://www.scopus.com/inward/record.url?scp=84983063649&partnerID=8YFLogxK
U2 - 10.1134/S1810232816030061
DO - 10.1134/S1810232816030061
M3 - 文章
AN - SCOPUS:84983063649
SN - 1810-2328
VL - 25
SP - 359
EP - 376
JO - Journal of Engineering Thermophysics
JF - Journal of Engineering Thermophysics
IS - 3
ER -