l Journal Papers (SCI) 1. Naoe Nishihara, Jing Xiong, Jungsoo Kim, Hui Zhu, Richard de Dear. Effect of adaptive opportunity on cognitive performance in warm environments. Science of The Total Environment, 2022, 823, 153698. (JCR Q1) 2. Hui Zhu, Songtao Hu, Chuck Yu. Cognitive performance in a warming planet. Indoor and Built Environment, 2022, 31(9): 2195-2198. 3. Hui Zhu, Mingle Hu, Linsheng Huang, Hua Su. Thermal comfort under weightlessness exposure: A discriminant analysis. Microgravity Science and Technology, 2021, 33: 45. (JCR Q2, EI) 4. Hui Zhu, Linsheng Huang, Chuck Wah Yu, Hua Su. Thermal comfort under weightlessness: A physiologically prediction. Indoor and Built Environment. 2020, 29 (8): 1169-1180. (JCR Q2) 5. Hui Zhu, Hanqing Wang, Duanru Li, et al. Evaluation of the Human Thermal Comfort under Simulated Weightlessness: An Experimental Study Based on the Power Spectrum Analysis of the Heart Rate Variability. Microgravity Science and Technology, 2019,31(1):73-83. (SCI, EI) 6. Hui Zhu, Hanqing Wang, Zhiqiang Liu, et al. Effects of simulated weightlessness on thermal sweating of human body: An Experimental study. Indoor and Built Environment, 2019,28(1):88-99. (SCI) 7. Hui Zhu, Hanqing Wang, Zhiqiang Liu, et al. Experimental study on the human thermal comfort based on the heart rate variability analysis under different thermal environments. Science of the Total Environment, 2018, 616:1124-1133. (SCI(Q1)) 8. Hui Zhu, Hanqing Wang, Zhiqiang Liu, et al. Experimental study on the variations in human skin temperature under simulated weightlessness. Building and Environment, 2017,117,135-145. (SCI(Q1), EI) 9. Hui Zhu, Hanqing Wang, Zhiqiang Liu. Effects of real and simulated weightlessness on the cardiac and peripheral vascular functions of humans: A review. International Journal of Occupational Medicine and Environmental Health, 2015,28(5):793-802. (SCI) l Conference papers/presentations 1. Hui Zhu, Mingle Hu, Songtao Hu, Haiying Wang, Hua Su. Evaluation of the cognitive performance under hot-humid environments using heart rate variability. Proceedings of Roomvent 2022, Xi’an, China, Sept. 16-19, 2022. 2. Hui Zhu, Mingle Hu, Linsheng Huang, Zehua Liu, and Hanqing Wang. Improving the indoor thermal environment with ceiling radiant terminals. Proceedings of the Healthy Buildings 2021-Europe, Norway, Jun 24-26, 2021. 3. Hui Zhu, Jing Xiong, Mingle Hu, Linsheng Huang. Thermal discomfort evaluation under hot and humid environments. Proceedings of the 16th Conference of the International Society of Indoor Air Quality & Climate, Indoor Air 2020, Seoul, Korea, Nov 1-4, 2020 4. Hui Zhu, Hanqing Wang, Hua Su, et al. Experimental evaluation of the indoor human thermal comfort under different environments based on heart rate variability analysis. Proceedings of the 11th International Symposium on Heating, Ventilation and Air Conditioning, Harbin, China, July 12 - July 15, 2019 l Projects 1. Natural Science Foundation Project of Shandong Province: Evaluation of the Human productivity under moderate thermal environments, Grant No. ZR2022ME061, 2023-2025. Served as PI. 2. Natural Science Foundation Project of Hunan Province: Study on the thermoregulation of the human body under hot-humid exposures, Grant No. 2020JJ4078, 2020-2022. Served as PI. 3. Provincial Distinguished Youth Project of the Educational Department of Hunan Province: Evaluation of the thermal discomfort using ANS balance under hot-humid exposures. Grant No. 20B514, 2021-2023. Served as PI. 4. Natural Science Foundation Project of Hunan Province: Study on the thermal comfort of the humans based on the electrophysiology under multiple climates, Grant No. 2018JJ3442. 2018-2021. Served as PI. 5. Project of the University of Sydney: Effects of thermal environmental adaptive opportunities on mental workloads during the performance of cognitive tasks. Grant No.: 2019/1044. 2020-2024. 6. Commissioned technical development project of Hisense air-conditioning co.ltd.: Numerical simulation of the thermal comfort of split air-conditioning systems. QUT-2022-KF-0003, 2022.1-2022.12 7. Key Project of ‘National Natural Science Foundation’ of China: Study on the mechanism of the transport and diffusion of airborne pollutants under temperature lamination. Grant No.: U1867221. 2019-2022. 8. Project of the ‘12th 5-year National Key Technology Research and Development Program’: Integration and demonstration of the key technologies for humidity control and energy-conservation in buildings of the Hot-summer and Cold-winter areas in China. Grant No. 2011BAJ03B07. 2011-2015. l Chinese patents 1. 朱辉. 一种带辐射对流自调节功能的新型辐射空调. 2022.9.6,ZL 202221301166.3 2. 雷远飞,朱辉,冯武强. 一种具有远程控制开关的可穿戴电子设备. 2022.9.6,ZL 202221211213.5 3. 雷远飞,朱辉,冯武强. 一种带远程控制功能的温度控制器,2022.8.30,ZL 202221210324.4 4. 朱辉,雷远飞,冯武强. 一种建筑高效节能用风冷热泵设备. 2022.1.11, ZL 202122090388.7 5. 朱辉,雷远飞,冯武强. 一种建筑节能用带气候调节功能的水力调节分配器. 2022.1.11, ZL 202122090372.6 6. 朱辉,雷远飞,冯武强. 一种建筑节能用照明装置. 2022.1.11, ZL 202121998080.6 7. 朱辉,雷远飞,冯武强. 一种被动式建筑窗体的安装结构. 2022.1.11, ZL 202121999857.0 8. 王汉青,刘金枝,谢东,朱辉. 采用空气层进行热量交换的防露辐射供冷顶板. 2019.2.22, ZL 201820794065.1 |