方趙嵩,男,副教授,廣州大學土木工程學院碩士生導師,2019年廣州市青年後備人才。
基本介紹
- 中文名:方趙嵩
- 出生日期:1982年5月
- 畢業院校:香港城市大學
- 學位/學歷:博士
- 職業:教師
- 專業方向:建築環境與設備工程、供熱、供燃氣、通風及空調工程
- 職務:副系主任
- 任職院校:廣州大學土木工程學院
- 性別:男
研究方向,個人經歷,主講課程,學術成果,學術著作,承擔項目,學術論文,指導成果,榮譽獎項,
研究方向
建築環境熱安全與熱舒適評價、強化傳熱與空調系統節能
個人經歷
教育背景
2015年5月-2017年5月 香港城市大學 博士後
2010年9月-2014年6月 重慶大學 供熱、供燃氣、通風及空調工程 博士
2006年9月-2008年12月 重慶大學 供熱、供燃氣、通風及空調工程 碩士
2001年9月-2005年6月 廣州大學 建築環境與設備工程專業 學士
工作經歷
2014年7月-至今 廣州大學土木工程學院建築設備工程系任教,現任副系主任
主講課程
建築環境學、冷熱源工程
學術成果
學術著作
第一作者+通訊發表18篇,已授權發明專利1項;
作為副主編主撰寫機械工業出版社出版的《空調冷熱源工程》
參編2019《廣東省居住建築節能標準》.
任廣東省製冷學會副秘書長《製冷》雜誌責任編輯
Building and Environment, Energy and Buildings, science of Total Environment, International Journal of Refrigeration, Science of the Total Environment, Sustainable Cities and Society, Indoor and Built Environment, Journal of Building Engineering, International Journal of Disaster Risk Reduction 等多個國際SCI期刊的通訊審稿人
承擔項目
1. 國家自然科學基金面上項目,亞熱帶室外高溫作業環境下的人體熱應激適應機制與預測研究,2020/1-2023/12,在研,主持
2. 廣州市科技計畫項目,基於多目標最佳化圓孔翅片管式換熱器的抑霜機理與熱泵系統運行控制研究,2018/4-2020/4,在研,主持
3. 建築安全與環境國家重點實驗室暨國家建築工程技術研究中心開放基金資助課題,高效翅片管空氣源熱泵結霜和抑霜機理與最佳化運行研究,2019/1-2020.12,在研,主持
4. “十三五”國家重點研發計畫子課題,村鎮建築地暖節能配套材料與可再生能源利用技術研究,2018/12-2022/12,在研,參與
5. 國家自然科學基金青年項目,基於空氣冷凝除濕過程中超細顆粒粒徑增大的空氣過濾系統最佳化研究,2019/1-2021/12,參與
學術論文
近五年發表學術論文23篇,SCI 22篇,其中JCR一區17篇
[1]. Zhou C, Fang Z*, Xu X, Zhang X, Ding Y, Jiang X, Ji Y, Using Long Short-Term Memory Networks to Predict Energy Consumption of Air-conditioning Systems, Sustainable Cities and Society, 2020,102000
[2]. Zhang Y, Zhou X, Zheng Z, Oladokun MO, Fang Z*, Experimental investigation into the effects of different metabolic rates of body movement on thermal comfort, Building and Environment,2020, 168,10648
[3]. Fang Z, Feng X,Xu X, Zhou X, Lin Z, Ji Y, Investigation into outdoor thermal comfort conditions by different seasonal field surveys in China, Guangzhou, International Journal of Biometeorology, 2019, 63 (10), 1357-1368
[4]. Fang Z, Xu X, Zhou X, Deng S, Wu H, Liu J, Lin Z, Investigation into the thermal comfort of university students conducting outdoor training, Building and Environment 149 (2019) 26-38.
[5]. Fang Z, Feng X, Zheng Z, Zhou X, Li L, Huang Y, Wang H, Liu F, Experimental study on performance optimization of air source heat pump using DOE method, Experimental Heat Transfer 11 (2018).
[6]. Fang Z, Feng X, Liu J, Lin Z, Mak CM, Niu J, Tse KT, Xu X, Investigation into the differences among several outdoor thermal comfort indices against field survey in subtropics, Sustainable Cities and Society 44 (2019) 676-690.
[7]. Zhang S, Cheng Y, Fang Z, Lin Z, Dynamic control of room air temperature for stratum ventilation based on heat removal efficiency: Method and experimental validations, Building and Environment 140 (2018) 107-118.
[8]. Fang Z, Zhang S, Cheng Y, Fong AML, Oladokun MO, Lin Z, Wu H, Field study on adaptive thermal comfort in typical air conditioned classrooms, Building and Environment 133 (2018) 73-82.
[9]. Fang Z, Xu X, Li Q, You X, Oladokun MO, An investigation of air and water dual adjustment decoupling control of surface heat exchanger, Applied Thermal Engineering 133 (2018) 418-427
[10]. Fang Z,Liu H, Li B, Tan M, Olaide OM, Experimental investigation on thermal comfort model between local thermal sensation and overall thermal sensation, Energy and Buildings 158 (2018) 1286-1295.
[11]. Fang Z,Lin Z, Mak CM, Niu J, Tse KT, Investigation into sensitivities of factors in outdoor thermal comfort indices, Building and Environment 128 (2018) 129-142.
[12]. Fang Z,Liu H, Li B, Du X, Baldwin A, Investigation of the effects of temperature for supplied air from an personal nozzle system on thermal comfort or air travelers, Building and Environment 126 (2017) 82-97.
[13]. Fang Z,Liu H, Li B, Baldwin A, Investigation of thermal comfort and the nozzle usage behavior in aircraft cabins, Indoor and Built Environment 10 (2017) 1-15.
[14].Fang Z,Feng X, Lin Z, Investigation of PMV Model for Evaluation of the Outdoor Thermal Comfort, Procedia Engineering 205 (2017) 2457-2462.
[15].Fang Z, Liu H, Li B, Cheng Y, Thermal comfort and skin temperature responses to the supplied air from personal air nozzles in aircraft cabins, Indoor and Built Environment, 2017, 27(6),831-835.
[16]. Fang Z, Li L, Cheng Y, Wang H, Oladokun MO, Investigation on thermal-hydraulic performance of outdoor heat exchanger in air sources heat pump, Experimental Thermal and Fluid Science, 2017, 84(6), 28-38.
[17].Fang Z, Liu H, Li B, Baldwin A, Wang J, Xia K, Experimental Investigation of Personal Air Supply Nozzle Use in Aircraft Cabins, Applied Ergonomics, 2015, 47(c): 193-202.
[18].Fang Z, Li N, Li B, Luo G, Huang Y, The effect of building envelope insulation on cooling energy consumption in summer, Energy and Buildings, 2014, 77(c): 197-205.
[19].Fang Z, Wang H, Zhang J, Wu W, The Experimental Analysis on Frosting Characteristic of SK-type Finned Refrigerating Heat Exchanger with Large-diameter Circular Holes, Applied Thermal Engineering, 2014, 64 (1-2): 192-200.
[20]. Fang Z, Li N, Li B, Liu H, Yan D, Liu F, Kong F. Experimental research on the attenuation rules of personalized air-conditioning nozzle jet flow in aircraft cabins, The International Journal of ventilation, 2013, 12(3): 285-295.
[21].Wu W,Fang Z,Ji W, Wang H, Optimal operation condition division with profit and losses analysis of energy recovery ventilator, Energy and Building, 2015, 124(4):203-209.
[22].Zhang S, Cheng Y, Fang Z,Huan C, Lin Z, Optimization of room air temperature in stratum-ventilated rooms for both thermal comfort and energy saving, Applied Energy 204 (2017) 420-431.
[23]. Wu Y, Liu H, Li B, Cheng Y, Tan D, Fang Z,Thermal comfort criteria for personal air supply in aircraft cabins in winter, Building and Environment 125 (2017) 373-382.
指導成果
指導學生獲2019全國CAR-ASHRAE學生設計大賽二等獎
指導學生獲2018全國CAR-ASHRAE學生設計大賽三等獎
指導學生獲第十五屆MDV中央空調設計套用大賽設計達人獎
榮譽獎項
1、2019年廣州市青年後備人才
2、重慶市優秀博士論文(約重慶市前5%, 2016)
3、重慶市優秀碩士論文(約重慶市前5%, 2010)
