U-PHOS Project aims to analyse and characterise the behaviour of a large diameter Pulsating Heat Pipe (PHP) on board REXUS 22 sounding rocket. A PHP is a passive thermal control device consisting of a serpentine capillary tube, evacuated, partially filled with a working fluid and finally sealed. In this configuration, the liquid and vapour phases are randomly distributed in the form of liquid slugs and vapour plugs. The heat is efficiently transported by means of the self-sustained oscillatory fluid motion driven by the phase change phenomena. On ground conditions, a small diameter is required in order to obtain a confined slug flow regime. In milli-gravity conditions, buoyancy forces become less intense and the PHP diameter may be increas...
Pulsating Heat Pipes (CLPHPs) tested on board REXUS-18 sounding rocket in order to get experimental ...
Two Closed Loop Pulsating Heat Pipes (CLPHPs) are tested on board REXUS 18 sounding rocket in order ...
A large tube may still behave, to a certain extent, as a capillary in a micro-gravity environment. T...
U-PHOS Project aims to analyse and characterise the behaviour of a large diameter Pulsating Heat Pip...
U-PHOS Project aims at analysing and characterising the behaviour of a large diameter Pulsating Heat...
A Pulsating Heat Pipe (PHP) is tested on board REXUS 22 sounding rocket in order to obtain data over...
A Pulsating Heat Pipe (PHP) is tested on board REXUS 22 sounding rocket in order to obtain data over...
A Pulsating Heat Pipe (PHP) is a two-phase passive heat transfer device that may be proved suitable ...
A Pulsating Heat Pipe (PHP) is a two-phase passive heat transfer device that may be proved suitable ...
This work presents the experimental results of two Pulsating Heat Pipes (PHP) with different interna...
A Pulsating Heat Pipe (PHP) is a two-phase passive heat transfer device that may be proved suitable ...
The Pulsating Heat Pipe (PHP) is a promising two-phase passive heat transfer device for the thermal ...
Micro-gravity environments might extent the concept of capillary behavior structure to large diamete...
Micro-gravity environments might extent the concept of capillary behavior structure to large diamete...
Pulsating Heat Pipes (CLPHPs) tested on board REXUS-18 sounding rocket in order to get experimental ...
Pulsating Heat Pipes (CLPHPs) tested on board REXUS-18 sounding rocket in order to get experimental ...
Two Closed Loop Pulsating Heat Pipes (CLPHPs) are tested on board REXUS 18 sounding rocket in order ...
A large tube may still behave, to a certain extent, as a capillary in a micro-gravity environment. T...
U-PHOS Project aims to analyse and characterise the behaviour of a large diameter Pulsating Heat Pip...
U-PHOS Project aims at analysing and characterising the behaviour of a large diameter Pulsating Heat...
A Pulsating Heat Pipe (PHP) is tested on board REXUS 22 sounding rocket in order to obtain data over...
A Pulsating Heat Pipe (PHP) is tested on board REXUS 22 sounding rocket in order to obtain data over...
A Pulsating Heat Pipe (PHP) is a two-phase passive heat transfer device that may be proved suitable ...
A Pulsating Heat Pipe (PHP) is a two-phase passive heat transfer device that may be proved suitable ...
This work presents the experimental results of two Pulsating Heat Pipes (PHP) with different interna...
A Pulsating Heat Pipe (PHP) is a two-phase passive heat transfer device that may be proved suitable ...
The Pulsating Heat Pipe (PHP) is a promising two-phase passive heat transfer device for the thermal ...
Micro-gravity environments might extent the concept of capillary behavior structure to large diamete...
Micro-gravity environments might extent the concept of capillary behavior structure to large diamete...
Pulsating Heat Pipes (CLPHPs) tested on board REXUS-18 sounding rocket in order to get experimental ...
Pulsating Heat Pipes (CLPHPs) tested on board REXUS-18 sounding rocket in order to get experimental ...
Two Closed Loop Pulsating Heat Pipes (CLPHPs) are tested on board REXUS 18 sounding rocket in order ...
A large tube may still behave, to a certain extent, as a capillary in a micro-gravity environment. T...