会议论文详细信息
33rd UIT (Italian Union of Thermo-fluid dynamics) Heat Transfer Conference
Pulsating Heat pipe Only for Space (PHOS): results of the REXUS 18 sounding rocket campaign
物理学;力学
Creatini, F.^1 ; Guidi, G.M.^1 ; Belfi, F.^1 ; Cicero, G.^1 ; Fioriti, D.^1 ; Di Prizio, D.^1 ; Piacquadio, S.^1 ; Becatti, G.^1 ; Orlandini, G.^1 ; Frigerio, A.^1 ; Fontanesi, S.^1 ; Nannipieri, P.^1 ; Rognini, M.^1 ; Morganti, N.^1 ; Filippeschi, S.^1 ; Marco, P. Di^1 ; Fanucci, L.^1 ; Baronti, F.^1 ; Mameli, M.^1,2 ; Manzoni, M.^2 ; Marengo, M.^2,3
University of Pisa, Largo Lucio Lazzarino 2, Pisa
56122, Italy^1
University of Bergamo, Viale Guglielmo Marconi 5, Dalmine (BG)
24044, Italy^2
University of Brighton, Lewes Road, Brighton
BN2 4GJ, United Kingdom^3
关键词: Acceleration fields;    Closed loop pulsating heat pipes;    Low-gravity condition;    Overall thermal resistance;    Particular condition;    Self-sustained oscillations;    Surface tension force;    Two-phase thermosyphon;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/655/1/012042/pdf
DOI  :  10.1088/1742-6596/655/1/012042
学科分类:力学,机械学
来源: IOP
PDF
【 摘 要 】

Two Closed Loop Pulsating Heat Pipes (CLPHPs) are tested on board REXUS 18 sounding rocket in order to obtain data over a relatively long microgravity period (approximately 90 s). The CLPHPs are partially filled with FC-72 and have, respectively, an inner tube diameter larger (3 mm) and slightly smaller (1.6 mm) than the critical diameter evaluated in static Earth gravity conditions. On ground, the small diameter CLPHP effectively works as a Pulsating Heat Pipe (PHP): the characteristic slug and plug flow pattern forms inside the tube and the heat exchange is triggered by thermally driven self-sustained oscillations of the working fluid. On the other hand, the large diameter CLPHP works as a two- phase thermosyphon in vertical position and doesn't work in horizontal position: in this particular condition, the working fluid stratifies within the device as the surface tension force is no longer able to balance buoyancy. Then, the idea to test the CLPHPs in reduced gravity conditions: as the gravity reduces the buoyancy forces becomes less intense and it is possible to recreate the typical PHP flow pattern also for larger inner tube diameters. This allows to increase the heat transfer rate and, consequently, to decrease the overall thermal resistance. Even though it was not possible to experience low gravity conditions due to a failure in the yoyo de-spin system, the thermal response to the peculiar acceleration field (hyper-gravity) experienced on board are thoroughly described.

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