In the interest of reducing the size of absorption chillers, a novel adiabatic membrane-based micro-absorber prototype is experimentally studied. Water-lithium bromide solution is used as the working fluid flowing through 50 rectangular microchannels of 0.15mm height, 3 mm width and 58 mm length. In the present study, a laminated microporous PTFE membrane of 0.45 µm pore diameter, separating the solution from the vapour, is tested. It incorporates a supporting layer of polypropylene. Different operating parameters were tested, including the inlet solution mass flow rate, temperature and concentration and the pressure potential for absorption. The measured concentration and temperature of the solution at the absorber outlet are used to evalu...
AbstractIn last decades, much effort has been made to drive cooling cycles exploiting renewable ener...
Automotive absorption refrigeration system has enormous potential to conserve energy using the exhau...
Thermally driven absorption chillers have the advantage of being powered by renewable or waste heat ...
In the interest of reducing the size of absorption chillers, a novel adiabatic membrane-based micro-...
With the aim of reducing the size and increasing the energy efficiency of absorption chillers, the u...
A microchannel absorber working adiabatically with the H2O-LiBr pair was tested experimentally using...
A plate-and-frame microchannel H2O&-LiBr absorber using a microporous membrane as contactor between ...
A microporous membrane is used in combination with rectangular microchannels in the absorber of an a...
In order to develop compact absorption refrigeration cycles driven by low heat sources, the simulate...
The simulation of a LiBr-H2O absorber using a porous fiber for the heat and mass transfer between t...
Designing a compact cooling system for specialty applications, like person-portable biological suits...
This study aims at investigating experimentally and analytically the characteristics and properties ...
Absorption refrigeration technology, which has the ability to utilize heat directly for cooling purp...
To open the market to small power residential sorption chillers a novel type of absorption cooling p...
AbstractIn last decades, much effort has been made to drive cooling cycles exploiting renewable ener...
Automotive absorption refrigeration system has enormous potential to conserve energy using the exhau...
Thermally driven absorption chillers have the advantage of being powered by renewable or waste heat ...
In the interest of reducing the size of absorption chillers, a novel adiabatic membrane-based micro-...
With the aim of reducing the size and increasing the energy efficiency of absorption chillers, the u...
A microchannel absorber working adiabatically with the H2O-LiBr pair was tested experimentally using...
A plate-and-frame microchannel H2O&-LiBr absorber using a microporous membrane as contactor between ...
A microporous membrane is used in combination with rectangular microchannels in the absorber of an a...
In order to develop compact absorption refrigeration cycles driven by low heat sources, the simulate...
The simulation of a LiBr-H2O absorber using a porous fiber for the heat and mass transfer between t...
Designing a compact cooling system for specialty applications, like person-portable biological suits...
This study aims at investigating experimentally and analytically the characteristics and properties ...
Absorption refrigeration technology, which has the ability to utilize heat directly for cooling purp...
To open the market to small power residential sorption chillers a novel type of absorption cooling p...
AbstractIn last decades, much effort has been made to drive cooling cycles exploiting renewable ener...
Automotive absorption refrigeration system has enormous potential to conserve energy using the exhau...
Thermally driven absorption chillers have the advantage of being powered by renewable or waste heat ...