Power usage effectiveness analysis of a liquid-pump-driven hybrid cooling system for data centers in subclimate zones
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Feng Zhou | G. Ma | Chaoya Shen | X. Yan
[1] Feng Zhou,et al. Advancements on mechanically driven two-phase cooling loop systems for data center free cooling , 2022, International Journal of Refrigeration.
[2] Yu Wang,et al. Phase change cooling in data centers: A review , 2021, Energy and Buildings.
[3] V. Palomba,et al. Experimental assessment and numerical study of a pump-assisted loop heat pipe for high capacity thermal systems , 2020, Applied Thermal Engineering.
[4] Zhen Li,et al. Experimental investigations of the influence factors for the boiling heat transfer characteristics of R134a coolant in a loop thermosiphon system , 2020, International Journal of Refrigeration.
[5] J. Cardemil,et al. Effect of climate conditions on the thermodynamic performance of a data center cooling system under water-side economization , 2020 .
[6] Liwen Hu,et al. Research of an integrated cooling system consisted of compression refrigeration and pump-driven heat pipe for data centers , 2019, Energy and Buildings.
[7] M. Deymi‐Dashtebayaz,et al. Potentiometric and economic analysis of using air and water-side economizers for data center cooling based on various weather conditions , 2019, International Journal of Refrigeration.
[8] Zhongliang Liu,et al. Energy-saving analysis of a case data center with a pump-driven loop heat pipe system in different climate regions in China , 2018, Energy and Buildings.
[9] Quan Zhang,et al. Energy saving analysis of the cooling plant using lake water source base on the optimized control strategy with set points change , 2018 .
[10] T. Jin,et al. Numerical investigation of a CO2 loop thermosyphon in an integrated air conditioning system for free cooling of data centers , 2017 .
[11] Guoyuan Ma,et al. Development and analysis of a pump-driven loop heat pipe unit for cooling a small data center , 2017 .
[12] Sanjeev Jain,et al. Transient simulation of wet cooling strategies for a data center in worldwide climate zones , 2016 .
[13] Zhang Hainan,et al. Numerical investigation on integrated system of mechanical refrigeration and thermosyphon for free cooling of data centers , 2015 .
[14] Guoyuan Ma,et al. Experimental investigation on a novel integrated system of vapor compression and pump-driven two phase loop for energy saving in data centers cooling , 2015 .
[15] Xiaohua Liu,et al. An experimental investigation of an R744 two-phase thermosyphon loop used to cool a data center , 2015 .
[16] Yuebin Yu,et al. Study on thermal performance of micro-channel separate heat pipe for telecommunication stations: experiment and simulation. , 2015 .
[17] Kuei-Peng Lee,et al. Analysis of energy saving potential of air-side free cooling for data centers in worldwide climate zones , 2013 .
[18] Shuangquan Shao,et al. A review on thermosyphon and its integrated system with vapor compression for free cooling of data centers , 2018 .
[19] Yongbin Feng,et al. Experimental analysis of a novel cooling system driven by liquid refrigerant pump and vapor compressor , 2015 .