World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
33
Citations
3435
World Ranking
9476
National Ranking
1570

Overview

Shuangquan Shao is affiliated with Huazhong University of Science and Technology in China, focusing on the field of engineering, particularly within several specialized subfields. Their research activity prominently includes mechanical engineering, renewable energy, sustainability and the environment, building and construction, electrical and electronic engineering, and computational mechanics.

The scientist's work addresses multiple main topics, including:

  • Heat Transfer and Optimization
  • Refrigeration and Air Conditioning Technologies
  • Building Energy and Comfort Optimization
  • Heat Transfer and Boiling Studies
  • Adsorption and Cooling Systems
  • Geothermal Energy Systems and Applications
  • Hybrid Renewable Energy Systems

Shuangquan Shao has contributed extensively to scholarly publications, with recent papers spanning from 2020 to 2022. Some notable works include:

  • "Effects of different magnetic fields on the freezing parameters of cherry" (2020), published in Journal of Food Engineering
  • "Effects of pressure levels in three-cascade storage system on the overall energy consumption in the hydrogen refueling station" (2021), published in International Journal of Hydrogen Energy
  • "A semi-theoretical model for energy efficiency assessment of air source heat pump systems" (2020), published in Energy Conversion and Management
  • "Numerical investigation of the vortex tube performance in novel precooling methods in the hydrogen fueling station" (2020), published in International Journal of Hydrogen Energy
  • "Integrated building envelope performance evaluation method towards nearly zero energy buildings based on operation data" (2022), published in Energy and Buildings

Shuangquan Shao frequently publishes in a number of journals, most notably:

  • SSRN Electronic Journal
  • International Journal of Refrigeration
  • Applied Thermal Engineering
  • Energy
  • International Journal of Hydrogen Energy

The scientist's research collaborations include frequent coauthors such as Zhichao Wang, Zhaowei Xu, Shen Tian, Qiang Yang, and Jianye Chen, with collaboration counts ranging from 10 to 28 joint works. These collaborations indicate a broad and active research network.

Best Publications

  • Free cooling of data centers: A review

    Hainan Zhang;Shuangquan Shao;Hongbo Xu;Huiming Zou

  • Performance representation of variable-speed compressor for inverter air conditioners based on experimental data

    Shuangquan Shao;Wenxing Shi;Xianting Li;Huajun Chen

  • A review on thermosyphon and its integrated system with vapor compression for free cooling of data centers

    Hainan Zhang;Shuangquan Shao;Changqing Tian;Kunzhu Zhang

  • Integrated system of mechanical refrigeration and thermosyphon for free cooling of data centers

    Hainan Zhang;Shuangquan Shao;Hongbo Xu;Huiming Zou

  • Investigation on feasibility of ionic liquids used in solar liquid desiccant air conditioning system

    Yimo Luo;Shuangquan Shao;Fei Qin;Changqing Tian

  • Experimental and theoretical research of a fin-tube type internally-cooled liquid desiccant dehumidifier

    Yimo Luo;Shuangquan Shao;Hongbo Xu;Changqing Tian

  • Heat transfer and flow features of Al2O3–water nanofluids flowing through a circular microchannel – Experimental results and correlations

    Hainan Zhang;Shuangquan Shao;Hongbo Xu;Changqing Tian

  • Effects of different magnetic fields on the freezing parameters of cherry

    Junyan Tang;Hainan Zhang;Changqing Tian;Shuangquan Shao

  • Simulation model for complex refrigeration systems based on two-phase fluid network – Part I: Model development

    Shuangquan Shao;Wenxing Shi;Xianting Li;Qisen Yan

  • Experimental and numerical investigation on a CO2 loop thermosyphon for free cooling of data centers

    Hainan Zhang;Zichao Shi;Kaitao Liu;Shuangquan Shao

  • Dehumidification performance of [EMIM]BF4

    Yimo Luo;Shuangquan Shao;Hongbo Xu;Changqing Tian

  • Effects of the magnetic field on the freezing process of blueberry.

    Junyan Tang;Shuangquan Shao;Changqing Tian

  • A new inverter heat pump operated all year round with domestic hot water

    Shuangquan Shao;Wenxing Shi;Xianting Li;Jie Ma

  • Dynamic simulation of variable capacity refrigeration systems under abnormal conditions

    Nan Liang;Shuangquan Shao;Changqing Tian;Yuying Yan

  • Numerical investigation on integrated system of mechanical refrigeration and thermosyphon for free cooling of data centers

    Hainan Zhang;Shuangquan Shao;Hongbo Xu;Huiming Zou

  • A fully floating system for a wave energy converter with direct-driven linear generator

    Yuping Gao;Shuangquan Shao;Huiming Zou;Mingsheng Tang

  • Effects of pressure levels in three-cascade storage system on the overall energy consumption in the hydrogen refueling station

    Unknown

  • A study on a real-time leak detection method for pressurized liquid refrigerant pipeline based on pressure and flow rate

    Shen Tian;Juanli Du;Shuangquan Shao;Hongbo Xu

  • Experimental investigation on a loop thermosyphon with evaporative condenser for free cooling of data centers

    Shuangquan Shao;Haichao Liu;Hainan Zhang;Changqing Tian

  • Numerical investigation of a CO2 loop thermosyphon in an integrated air conditioning system for free cooling of data centers

    Hainan Zhang;Shuangquan Shao;Tingxiang Jin;Changqing Tian

  • Simulation on vertical microchannel evaporator for rack-backdoor cooling of data center

    Binfei Zhan;Shuangquan Shao;Hainan Zhang;Changqing Tian

  • Development and composition of a data center heat recovery system and evaluation of annual operation performance

    Qionghai Huang;Shuangquan Shao;Hainan Zhang;Changqing Tian

  • COVID-2019 Lockdown in Beijing: A Rare Opportunity to Analyze the Contribution Rate of Road Traffic to Air Pollutants

    Yalu Xin;Shuangquan Shao;Zhichao Wang;Zhaowei Xu

  • Simulation model for complex refrigeration systems based on two-phase fluid network – Part II: Model application

    Wenxing Shi;Shuangquan Shao;Xianting Li;Qisen Yan

  • Performance analysis of a R134a/CO2 cascade heat pump in severe cold regions of China

    Hongwei Zhang;Xudong Geng;Shuangquan Shao;Chunqiang Si

  • Experimental investigation on ducted hot aisle containment system for racks cooling of data center

    Binfei Zhan;Shuangquan Shao;Mi Lin;Hainan Zhang

  • Investigation on the efficiency degradation characterization of low ambient temperature air source heat pump under partial load operation

    Zhaowei Xu;Hao Li;Wei Xu;Shuangquan Shao

  • Experimental Study on Heating Performance of an R1234yf Heat Pump System for Electric Cars

    Huiming Zou;Guangyan Huang;Shuangquan Shao;Xiaoqiang Zhang;Xiaoqiang Zhang

  • Experimental investigation on performance improvement of electro-osmotic regeneration for solid desiccant

    Ronghui Qi;Changqing Tian;Shuangquan Shao;Mingsheng Tang

  • Impact of water volume on the energy saving potential of air source heat pump systems

    Hao Li;Qiang Yang;Zhaowei Xu;Shuangquan Shao

  • Discharging process and performance of a portable cold thermal energy storage panel driven by embedded heat pipes

    Shen Tian;Qifan Yang;Na Hui;Haozhi Bai

  • A dynamic analytical model to predict and parametrically analyze charging and discharging process of tube-in-tank PCM systems

    Shen Tian;Haozhi Bai;Na Hui;Hongyuan Gao

  • Experimental study on the synthetic dust loading characteristics of air filters

    Qiang Li;Zhichao Wang;Shuangquan Shao;Zhiqiang Niu

  • Horizontal-flow multimedium heat exchanger

    Shao Shuangquan;Zhang Hainan;Tian Changqing

  • A Universal Simulation Model of Air-Cooled Condenser Consisting of Plate-Fin-Tube

    Shuangquan Shao;Xianting Li;Wenxing Shi;Qisen Yan

  • Development of a miniature ionic wind blower for active cooling in different scale: Embedded electrode and modularized design

    Shen Tian;Xiaoye Ren;Qifan Yang;Shuangquan Shao

Frequent Co-Authors

Changqing Tian
Changqing Tian Chinese Academy of Sciences

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