领域:新能源产业 学校:东南大学职称:研究员
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1. 美国能源部项目,Radiative Cooled Cold Storage Modules and Systems,2015/7 - 2018/7,$2,998,642,参与。
2. 美国能源部项目,Thermoregulatory Clothing System for Building Energy Saving,2015/4 - 2018/9,$2,996,807,参与。
3. 作为主要成员参与国家自然科学基金项目2项,国家科技支撑计划项目2项。
(截至2019年12月)共计发表SCI期刊论文25篇,在Google Scholar中被引用1400余次,在Web of Science中被引用840次,*表示通讯作者 1.Dongliang Zhao, Xiaobo Yin, Jingtao Xu, Gang Tan, Ronggui Yang, Radiative sky cooling-assisted thermoelectric cooling system for building applications, Energy, Vol.190, 116322, 2020. 2.Dongliang Zhao, Ablimit Aili, Xiaobo Yin, Gang Tan, Ronggui Yang, Roof-integrated radiative air-cooling system to achieve cooler attic for building energy saving, Energy and Buildings, Vol. 203, 109453, 2019. 3.Luxing Wang, Xing Lu, Xingfei Yu, Dongliang Zhao, Wei Ren, Qiuwang Wang, Ting Ma, Effect of operating temperature on interface diffusion and power generation bismuth telluride thermoelectric modules, Heat Transfer Research, Accepted. 4.Ablimit Aili, Zhiyuan Wei, Yizhou Chen, Dongliang Zhao, Ronggui Yang, Xiaobo Yin, Selection of polymers with functional groups for day-time radiative cooling, Materials Today Physics, Vol. 10, 100127, 2019. 5.S. Manikandan, C. Selvam, P. Pavan Sai Praful, Ravita Lamba, S. C. Kaushik, Dongliang Zhao*, Ronggui Yang, A novel technique to enhance thermal performance of a thermoelectric cooler using phase-change materials, Journal of Thermal Analysis and Calorimetry, 2019. 6.Hong Fang, Dongliang Zhao, Jinchao Yuan, Ablimit Aili, Xiaobo Yin, Ronggui Yang, and Gang Tan, Performance evaluation of a metamaterial-based new cool roof using improved Roof Thermal Transfer Value (iRTTV) model, Applied Energy, 248 (2019), 589-599. 7.Dongliang Zhao, Ablimit Aili, Yao Zhai, Shaoyu Xu, Gang Tan, Xiaobo Yin, Ronggui Yang, Radiative sky cooling: Fundamentals principles, Materials, and Applications, Applied Physics Reviews, 6(2), 021306, 2019.(影响因子12.8) 8.Ablimit Aili, Dongliang Zhao, Jiatao Lu, Yao Zhai, Xiaobo Yin, Gang Tan, Ronggui Yang, A kW-scale, 24-hour continuously operational, radiative sky cooling system: Experimental demonstration and predictive modeling, Energy Conversion and Management, 186 (2019) 586-596. 9.Dongliang Zhao, Ablimit Aili, Yao Zhai, Jiatao Lu, Dillon Kidd, Gang Tan, Xiaobo Yin, Ronggui Yang, Subambient cooling of water: Toward real-world applications of daytime radiative cooling, Joule, 2019, 3(1), 111-123.(能源领域高影响力期刊) 10.Rongfu Wen, Shanshan Xu, Dongliang Zhao, Lixin Yang, Xuehu Ma, Wei Liu, Yung-Cheng Lee, Ronggui Yang, Sustaining enhanced condensation on hierarchical copper mesh-covered surfaces, National Science Review, 2018, 5(6), 878-887.(影响因子13.2) 11.Dongliang Zhao, Xing Lu, Tianzhu Fan, Yuen Shing Wu, Lun Lou, Qiuwang Wang, Jintu Fan, Ronggui Yang, Personal thermal management using portable thermoelectrics for potential building energy saving, Applied Energy, 218 (2018) 282-291. 12.Xing Lu, Dongliang Zhao, Ting Ma, Qiuwang Wang, Ronggui Yang, Thermal resistance matching for thermoelectric cooling systems, Energy Conversion and Management, 169 (2018) 186-193. 13.Kai Zhang, Dongliang Zhao, Xiaobo Yin, Ronggui Yang, Gang Tan, Energy Performance and economic analysis of a new hybrid radiative cooling system for single-house buildings in USA, Applied Energy, 224 (2018) 371-381. 14.Rongfu Wen, Shanshan Xu, Dongliang Zhao, Yung-Cheng Lee, Xuehu Ma, Ronggui Yang, Hierarchical superhydrophobic surfaces with micropatterned nanowire arrays for high-efficiency jumping droplet condensation, ACS Applied Materials and Interfaces, 2017, 9(51), 44911 - 44921. 15.Dongliang Zhao, Christine Elizabeth Martini, Siyu Jiang, Yaoguang Ma, Yao Zhai, Gang Tan, Xiaobo Yin, Ronggui Yang, Development of a single-phase thermosiphon for cold collection and storage of radiative cooling, Applied Energy, 205 (2017) 1260 - 1269. 16.Hong Fang, Dongliang Zhao*, Gang Tan*, Anthony Denzer, Study of underfloor air distribution using zonal model-based simulation and experimental measurements, Energy and Buildings, 152 (2017) 96-107. 17.Kai Zhang, Dongliang Zhao, Xiaobo Yin, Ronggui Yang, Gang Tan, Modelling study of the low-pump-power demand constructal T-shaped pipe network for a large scale radiative cooled-cold storage system, Applied Thermal Engineering, 127 (2017) 1564 - 1573. 18.Yao Zhai, Yaoguang Ma, Sabrina N. David, Dongliang Zhao, Runnan Lou, Gang Tan, Ronggui Yang, Xiaobo Yin, Scalable-manufactured randomized glass-polymer hybrid metamaterial for daytime radiative cooling, Science, 355 (2017) 1062 - 1066. (影响因子41.0,ESI高被引论文,ESI热点论文,Web of Science被引211次) 19.Rongfu Wen, Qian Li, Jiafeng Wu, Gengsheng Wu, Wei Wang, Yunfei Chen, Xuehu Ma, Dongliang Zhao, Ronggui Yang, Hydrophobic copper nanowires for enhancing condensation heat transfer, Nano Energy 33 (2017) 177-183. (影响因子15.5,ESI高被引论文,Web of Science被引59次) 20.Dongliang Zhao, Xin Qian, Xiaokun Gu, Saad Jajja, and Ronggui Yang, Measurement techniques for thermal conductivity and conductance of bulk and thin film materials, Journal of Electronic Packaging, 138 (4), 040802, 2016. (ESI高被引论文,Web of Science被引80次) 21.Dongliang Zhao, Gang Tan, Numerical analysis of a shell-and-tube latent heat storage unit with fins for air-conditioning application, Applied Energy, 138 (2015) 381-392. 22.Gang Tan, Dongliang Zhao*, Study of a thermoelectric space cooling system integrated with phase change material, Applied Thermal Engineering, 86 (2015) 187-198. 23.Dongliang Zhao, Gang Tan, Experimental evaluation of a prototype thermoelectric system integrated with PCM (phase change material) for space cooling, Energy, 68 (2014) 658-666. 24. 1.Ronggui Yang, Xiaobo Yin, Gang Tan, Dongliang Zhao, Yaoguang Ma and Yao Zhai, Radiative Cooling Structures and Systems,Publication No. US20170248381 A1, Publication date: Aug 31, 2017 2.李勇,吕光召,赵东亮,徐静,王如竹。一种用于温室供暖的太阳能蓄热供暖装置,专利类型:发明专利,专利号:ZL 2012 1 0004044.2,申请日期:2012年01年06日,授权公告日:2014年05月21日 3.代彦军,李勇,王如竹,赵东亮,基于太阳能空气集热器的建筑供热采暖系统,专利类型:发明专利,专利号:ZL 2010 1 0129566.6,申请日期:2010年3月23日,授权公告日:2012年09月19日 |