As a typically highly efficient two-phase heat transfer under cryogenic temperature range, the operation performances of cryogenic loop heat pipes (CLHPs) might be affected by the relative location of different components. A transient mathematical model is established in present work. The model validation is demonstrated by comparing the simulation results with an auxiliary loop type neon-charged CLHP (Ne-CLHP) experiment data, and a good agreement is achieved. The effect of gravity caused by different layout orientations on the Ne-CLHP operation performances are then investigated numerically. There are three operation modes, namely normal LHP mode (n-LHP), gravity-assisted LHP mode (g-LHP), and gravity thermosyphon mode (GTP), according to...
The research with devices that operates passively by means of capillary forces has resulted in exten...
A Closed Loop Pulsating Heat Pipe made of a copper tube (1.1mm/2mm I.D./O.D.) and filled with FC-72 ...
A numerical code has been developed to investigate the thermal performances of Closed Loop Pulsating...
As a typically highly efficient two-phase heat transfer under cryogenic temperature range, the opera...
The Closed Loop Pulsating Heat Pipe (CLPHP) is a very promising passive two-phase heat transfer devi...
Loop heat pipes (LHPs) are efficient two-phase heat transfer devices that have found many space and ...
Closed Loop Pulsating Heat Pipe (CLPHP) is a passive two-phase heat transfer device having potential...
Abstract- with the advancement in cryogenics, applications like optical sensors, electronic circuitr...
A Closed Loop Pulsating Heat Pipe (CLPHP) is a new concept of wickless heat pipe, which represents a...
A numerical code has been developed to investigate the thermal performances of Closed Loop Pulsating...
A pulse tube cryocooler (PTC) for future metrological satellites has been developed at one of the le...
Loop heat pipes (LHPs) are highly efficient two-phase heat transfer devices with the ability to tran...
High power and high local heat flux electronic devices employed in aircraft and spacecraft sustain t...
A Closed Loop Pulsating Heat Pipe made of a copper tube (1.1mm/2mm I.D./O.D.) and filled with FC-72 ...
A multi-turn Closed Loop Pulsating Heat Pipe (CLPHP) made of copper (I.D. 1.1 mm, O.D. 2 mm), filled...
The research with devices that operates passively by means of capillary forces has resulted in exten...
A Closed Loop Pulsating Heat Pipe made of a copper tube (1.1mm/2mm I.D./O.D.) and filled with FC-72 ...
A numerical code has been developed to investigate the thermal performances of Closed Loop Pulsating...
As a typically highly efficient two-phase heat transfer under cryogenic temperature range, the opera...
The Closed Loop Pulsating Heat Pipe (CLPHP) is a very promising passive two-phase heat transfer devi...
Loop heat pipes (LHPs) are efficient two-phase heat transfer devices that have found many space and ...
Closed Loop Pulsating Heat Pipe (CLPHP) is a passive two-phase heat transfer device having potential...
Abstract- with the advancement in cryogenics, applications like optical sensors, electronic circuitr...
A Closed Loop Pulsating Heat Pipe (CLPHP) is a new concept of wickless heat pipe, which represents a...
A numerical code has been developed to investigate the thermal performances of Closed Loop Pulsating...
A pulse tube cryocooler (PTC) for future metrological satellites has been developed at one of the le...
Loop heat pipes (LHPs) are highly efficient two-phase heat transfer devices with the ability to tran...
High power and high local heat flux electronic devices employed in aircraft and spacecraft sustain t...
A Closed Loop Pulsating Heat Pipe made of a copper tube (1.1mm/2mm I.D./O.D.) and filled with FC-72 ...
A multi-turn Closed Loop Pulsating Heat Pipe (CLPHP) made of copper (I.D. 1.1 mm, O.D. 2 mm), filled...
The research with devices that operates passively by means of capillary forces has resulted in exten...
A Closed Loop Pulsating Heat Pipe made of a copper tube (1.1mm/2mm I.D./O.D.) and filled with FC-72 ...
A numerical code has been developed to investigate the thermal performances of Closed Loop Pulsating...