AbstractIntegrated system of mechanical refrigeration and thermosyphon (ISMT) is an ideal solution for energy-saving of data centers. The performance of the thermosyphon mode of an ISMT is very important and has great effect on its annual energy-saving rate. To investigate and optimize the performance of the thermosyphon mode, a distributed-parameter model is built and verified by experimental results. With this model, the performance of different air flow rate and geometric parameters is studied. The results show that the cooling capacity and circulation flow rate both increase with air flow rate and riser diameter, and decrease with tube length. Combined with these performance simulation results, the annual working time of thermosyphon mo...
AbstractA latent heat storage unit (LHSU) that combined with energy storage modules and an air coole...
The present study is concerned with a cooling system for multichip modules (MCM) in telecommunicatio...
Efficient, small, state-of-the-art passive cooling two-phase systems, i.e. advanced micro-thermosyph...
AbstractIntegrated system of mechanical refrigeration and thermosyphon (ISMT) is an ideal solution f...
ABSTRACT Spaces with high heat generation such as telecommunication base stations (TBS) increase sha...
Passive, gravity-driven thermosyphons represent a stepchange in technology towards the goal of great...
AbstractFree cooling is one of the most potential ways of reducing the energy consumption of data ce...
International audienceThis paper presents an analytical model for a thermosyphon loop developed for ...
In the present study, a simulation code specifically developed to evaluate the thermal-hydraulic per...
This paper advances the state-of-the-art in novel passive two-phase systems for more efficient cooli...
© 2019 International Institute of Refrigeration. All rights reserved. Heat generation of datacenters...
At present, data centers are widely used in computer software companies, banks and so on. It require...
An integrated cooling system comprising passive cooling-thermosyphon loop and active cooling-vapor c...
In the present paper it is proposed to consider the computer cooling capacity using the thermosyphon...
Development of information technology drives the increase demand of data centre and the invention o...
AbstractA latent heat storage unit (LHSU) that combined with energy storage modules and an air coole...
The present study is concerned with a cooling system for multichip modules (MCM) in telecommunicatio...
Efficient, small, state-of-the-art passive cooling two-phase systems, i.e. advanced micro-thermosyph...
AbstractIntegrated system of mechanical refrigeration and thermosyphon (ISMT) is an ideal solution f...
ABSTRACT Spaces with high heat generation such as telecommunication base stations (TBS) increase sha...
Passive, gravity-driven thermosyphons represent a stepchange in technology towards the goal of great...
AbstractFree cooling is one of the most potential ways of reducing the energy consumption of data ce...
International audienceThis paper presents an analytical model for a thermosyphon loop developed for ...
In the present study, a simulation code specifically developed to evaluate the thermal-hydraulic per...
This paper advances the state-of-the-art in novel passive two-phase systems for more efficient cooli...
© 2019 International Institute of Refrigeration. All rights reserved. Heat generation of datacenters...
At present, data centers are widely used in computer software companies, banks and so on. It require...
An integrated cooling system comprising passive cooling-thermosyphon loop and active cooling-vapor c...
In the present paper it is proposed to consider the computer cooling capacity using the thermosyphon...
Development of information technology drives the increase demand of data centre and the invention o...
AbstractA latent heat storage unit (LHSU) that combined with energy storage modules and an air coole...
The present study is concerned with a cooling system for multichip modules (MCM) in telecommunicatio...
Efficient, small, state-of-the-art passive cooling two-phase systems, i.e. advanced micro-thermosyph...