
馬濤
副教授所在系所:制冷與低溫工程研究所
辦公電話:021-34206056
電子郵件:tao.ma@sjtu.edu.cn; tao.ma@connect.polyu.hk
通訊地址:上海交大機械與動力工程學院A樓428室
個人主頁:http://www.bhcdo.cn/teacher_directory1/matao.html
教育背景
2010.08―2015.01 香港理工大學/建設與環(huán)境學院 博士
2006.09―2010.07 中南大學/能源與科學工程學院 學士
工作經(jīng)歷
2020.12-至今 上海交通大學/機械與動力工程學院 副教授,博士生導師
2016.07―2020.12 上海交通大學/機械與動力工程學院 講師,博士生導師
2015.01―2016.07 香港理工大學/屋宇設備工程學系 博士后研究員
研究方向
(1) 新型彩色光伏與半透明BIPV技術開發(fā)
(2) 光伏電池熱物理及電熱綜合利用
(3) 零碳建筑/園區(qū)系統(tǒng)解決方案
(4) 分布式光伏儲能、需求側響應與柔性用能、虛擬電廠、源荷儲一體化等
歡迎有志青年學子和博士后加入課題組!
學術兼職
(1) Applied Energy編委(影響因子10.1)
(2) Solar Energy Materials & Solar Cells編委(影響因子6.3)
(3) Nexus青年編委
(4) Electronics編委 (影響因子2.6)
(5) AIMS Materials Science編委(影響因子1.4)
(6) 中國土木工程學院市政分會理事、中國光伏行業(yè)協(xié)會光電建筑專委會、中國可再生能源學會建筑專委會委員、中國可再生能源學會青年委員、中國建筑節(jié)能協(xié)會光儲直柔專業(yè)委員會委員
(7) 全國專業(yè)標準化技術委員會委員
(8) 國際能源署EBC67和SHC65主要成員、IEEE PES會員、WSSET會員
(9) 瑞士、智利等國基金評審專家
(10) 國家自然科學基金委和上海市科委評審專家
(11) Energy and Built Environment期刊青年編委、Energy Research Journal、Insight - Energy Science、International Journal of Sustainable Energy Planning and Management等期刊編委
(12) 期刊特邀客座編輯:Current Alternative Energy、Science and Technology of Nuclear Installations等
(12) 主旨報告:Keynote speech in 9th Asia-Pacific Power and Energy Engineering Conference 2017;Keynote speech in Interntaional Conference on Resource and Environmental Science 2016
(13) 國際會議分會場主席:9th International Conference on Applied Energy;Applied Energy Symposium and Forum 2016等;
(14) SusTEM2015學術委員會成員; ACEEED2016, Dubai學術委員會成員;SET2013秘書組組長
(15) 長期擔任多個SCI期刊的審稿人:Nature Energy, Joule, Nature Sustainability, Energy & Environmental Science; Renewable and Sustainable Energy Reviews, Applied Energy, Progress in Photovoltaics: Research and Applications, Energy, Environmental Science & Technology, Energy Conversion and Management, Solar Energy; International Journal of Electrical Power & Energy Systems; International Journal of Energy Research; IET Renewable Power Generation; International Journal of Photoenergy; Energies; Sustainability; Journal of Solar Energy Engineering
課程名稱:《智慧能源與能源互聯(lián)網(wǎng)》,授課對象:本科生(48學時)
課程名稱:《太陽能光伏發(fā)電基礎與應用》,授課對象:本科生(48學時)
課程名稱:《復雜動力系統(tǒng)的設計與實踐》,授課對象:研究生(64學時)
課程名稱:《云計算技術》,授課對象:本科生(32學時)
課程名稱:《新能源科學與工程專業(yè)實習》,授課對象:本科生
課程名稱:《新能源系統(tǒng)》(全英語),授課對象:研究生 (部分章節(jié))
課程名稱:《可再生能源的高效轉換與利用》,授課對象:本科生 (部分章節(jié))
科研項目
縱向項目:
2025-2028,上海市科委關鍵技術研發(fā)計劃新能源專項,高效率半透明太陽電池技術及應用,負責人
2023-2025,十四五國家重點研發(fā)計劃,建筑光伏系統(tǒng)仿真與設計軟件,課題負責人
2023-2026,十四五國家重點研發(fā)計劃,光伏器件與組件特性仿真的基礎研究
2024-2027,國家自然科學基金(面上),基于納米光子結構的高效彩色光伏設計理論與調控方法研究,負責人
2020-2023,國家自然科學基金(面上),太陽電池光電熱轉換機理與多物理場耦合研究,負責人
2016-2018,國家自然科學基金(青年),相變蓄熱式光伏建筑一體化系統(tǒng)的傳熱傳質及電學性能機理研究,負責人
2022-2025,上海市“科技創(chuàng)新行動計劃”國際科技合作項目,太陽能電池能質調控機理及光電熱綜合性能研究,負責人
2021-2023,國家重點實驗室開放基金,基于預測控制的分布式光伏儲能系統(tǒng)容量配置與運行策略研究,負責人
2018-2020,上海市浦江人才計劃,太陽能光伏和相變材料集成系統(tǒng)的電熱綜合性能研究,負責人
企業(yè)橫向:
2025-2026,三峽集團/海望氫能,面向綠色化工應用的風光氫儲一體化系統(tǒng)優(yōu)化配置方法研究,負責人
2025-2026,奇瑞集團,新能源汽車車載光伏增程技術研究,負責人
2024-2025,中海油氣電集團,LNG接收站防爆區(qū)分布式光伏應用研究,負責人
2024-2025,德國默克,光伏用干涉類珠光材料開發(fā)與測試,負責人
2024-2025,國網(wǎng)安徽,變電站光伏聲屏障關鍵技術研究,子課題負責人
2023-2024,隧道股份上海城建物資有限公司技術開發(fā),“光伏+交通”融合發(fā)展前沿技術與應用場景深化研究,負責人
2023-2023,南京公路發(fā)展集團,彩色光伏聲屏障方案設計與技術深化研究,負責人
2020-2021,深圳科創(chuàng)委/深圳交通中心,城市交通光伏路面關鍵技術研發(fā),負責人
2017-2018,隧道股份上海城建物資有限公司技術開發(fā),裝配式建筑光伏一體化預制構件的開發(fā)與研究,負責人
校內項目:
2017-2019,上海交通大學科研啟動項目,建筑物風光互補可再生能源利用技術的研發(fā)和示范,負責人
2016-2018,PolyU Matching Grant: Study on thermal and electrical performance of building-integrated photovoltaic system with phase change materials (No: 4-BCCX), Principal Investigator
主參項目:
2022-2025,上海市高校IV類高峰學科非碳基能源轉換與利用,特色太陽能組件及其示范應用,參與
2023-2025,國家重點研發(fā)計劃“政府間國際科技創(chuàng)新合作”專項,二次反射塔式光熱-光伏聯(lián)合電站穩(wěn)定電力輸出關鍵技術研究,參與
2023-2026,香港研究資助局(GRF),Development of a Novel Solar PV/T Structure with Built-in Non-Uniform EEPCM Heat Storage Units for Smart Cooling of Solar PV Modules,上海交大方負責人(Co-I)
2023-2026,香港理工大學研究基金,Investigating the coupled optical-electrical-thermal performance of bifacial solar photovoltaic modules for effective solar energy utilization,上海交大方負責人(Co-I)
2020-2024,國家重點研發(fā)計劃(國際合作),低碳社區(qū)建筑清潔能源冷熱電聯(lián)供關鍵技術及示范,參與
2018-2022,國家自然科學基金(重點),太陽能氨-水再吸收多重回熱式熱泵循環(huán)機理與實驗研究,參與
2018-2011,上海市科委國際合作基金,面向建筑能源自維持的建筑構件蓄熱式太陽能熱泵研究及優(yōu)化,參與
代表性論文專著
一、期刊論文(h-index=64;citation: 14000+;ESI高被引論文:15篇;ESI熱點論文:2篇):
[144] Z. Li, , S. Li, J. Yan, J. Peng, T. Ma*, Balancing aesthetics and efficiency of coloured opaque photovoltaics. Nature Reviews Clean Technology (2025).
[143] T. Ma*, T. Li, K. Yu, J. Peng, Z. Shi, A versatile optical-electrical-thermal simulation framework for photovoltaic devices integrating ray tracing and conversion losses, Solar Energy Materials and Solar Cells 2025, 284, 113489
[142] S. Li, Y. Chen, T. Li, Z. Li, T. Ma*. Multilayer thin film design for neutral-colored opaque photovoltaics. Applied Energy 378 (2025) 124710.
[141] C Dai, T Ma*, Y Zhang, S Weng, J Peng, Improvement of building energy flexibility with PV battery system based on prediction and load management, Building Simulation 18 (1), 65-85
[140] A Kazemian, K Khosravi, S Sen, P Talebizadehsardari*, A Cairns, T Ma, Optimizing photovoltaic thermal systems with wavy collector Tube: A response Surface-Based design study with desirability analysis, Applied Thermal Engineering 258, 124475
[139] J.E. Conduah, K.Kusakana*, O.Y. Odufuwa, P.A.Hohne, T. Ma, Forecasting energy consumption and enhancing sustainability in microbreweries: Integrating ANN-based models with thermal storage solutions, Journal of Energy Storage 2025, 112, 115508
[138] Y. Tan, J.Peng*, Z. Luo, T. Ma, Partitioned optimal design of semi-transparent PV curtain wall: Strike a balance among occupants’ comfort, energy conservation, and power generation, Energy, 2025, 320, 135236
[137] Q Zhang, J Peng*, Y Luo, M Wang, S Wang, Y Tan, T Ma, Development of a novel power generation model for bifacial photovoltaic modules based on dynamic bifaciality. Energy Conversion and Management 324, 119305
[136] S. Lu, S. Amaducci, S. Gorjian, M. Haworth, C. H?gglund, T. Ma, S. Zainali, P.E. Campana*, Wavelength-selective solar photovoltaic systems to enhance spectral sharing of sunlight in agrivoltaics, Joule, 8 (2024) 2483-2522.
[135] T. He, T. Ma*, B. Blasi, Z. Li, S. Li, Y. Chen, Design of periodic dielectric multilayer thin films for colorizing PV panels, Solar Energy 278 (2024) 112655
[134] X. Xu, T. Ma*,X. Feng, S. Weng, S. Li, J. Peng, Simulation and optimal configuration of a combined photovoltaic-thermal and heat pump system with a hybrid energy storage, Energy Conversion and Management 317 (2024) 118851
[133] Y. Zhang, T. Ma*, H. Yang*, S. Cao, F. You, Experimental study and techno-enviro-economic analysis of pavement-integrated photovoltaic/thermal applications in different cities considering the ground influence, Energy 306 (2024)132449
[132] Y. Chen, Z. Li, S. Li, J. Liu, X. Dai, S. Lu, T. Ma*, Design of periodic dielectric multilayer thin films for colorizing PV panels, Solar Energy Materials & Solar Cells 275 (2024) 113033
[131] T. Li, T. Ma*, W. Wang*, G. Xiao*, An improved mathematical model for the photon-enhanced thermionic emission (PETE) device with an emphasis on the photon-electron conservation relationship, Solar Energy Materials & Solar Cells 271 (2024) 112827
[130] S. Weng, T. Ma*, K. Kanzumba*, F. Zhao, Y. Zhang, B. Li, P. Xue, Battery capacity design and optimal operation control of photovoltaic-battery system considering electrochemical aging, Journal of Energy Storage 79 (2024) 110103
[129] A. Kazemian, T. Ma*, H. Yang*, Evaluation of various collector configurations for a photovoltaic thermal system to achieve high performance, low cost, and lightweight, Applied Energy 357 (2024) 122422
[128] S Wang, J Peng, Y Luo, T Ma, P Xue, Y Wu, Q Zhang, J Zhou, Development of an engineering-friendly evaluation model for solar spectral irradiance using readily accessible subaerial meteorology, Renewable Energy 237, 121632
[127] B. Sun, L. Lu, J. Chen, T. Ma, Y. Yuan, Full-spectrum radiative cooling for enhanced thermal and electrical performance of bifacial solar photovoltaic modules: A nationwide quantitative analysis, Applied Energy, 362 (2024),123037,
[126] V. Kapsalis, C. Maduta, N. Skandalos, M. Wang, S. Bhuvad, D. D'Agostino, T. Ma, D. Raj, D. Parker, J. Peng, D. Karamanis, Critical assessment of large-scale rooftop photovoltaics deployment in the global urban environment, Renewable and Sustainable Energy Reviews, 189 (2024), 114005
[125] K. Wang, J. Peng*, S. Li, H. Li, B. Zou, T. Ma, J. Ji, Compressor speed control for optimizing energy matching of PV-driven AC systems during the cooling season, Energy, 298 (2024),131270
[124] C. Jamroen*, P. Vongkoon, T. Ma, Techno-economic assessment of grid-connected residential photovoltaic systems considering overvoltage-induced generation curtailment, Energy Reports, 11 (2024), 5059-5068
[123] Z. Li, T. Ma*, F. Ji, H. Shan, Y. Dai, R. Wang. A Hygroscopic Composite Backplate Enabling Passive Cooling of Photovoltaic Panels. ACS Energy Letters. 8 (2023) 1921-8.
[122] M.S. Javed, J. Jurasz, P.B. D?bek, T. Ma, P. Jadwiszczak, E. Niemierka. Green manufacturing facilities–Meeting CO2 emission targets considering power and heat supply. Applied Energy. 350 (2023) 121707.
[121] N. Zhao, W. Gu, Z. Zheng, T. Ma. Multi-objective bi-level planning of the integrated energy system considering uncertain user loads and carbon emission during the equipment manufacturing process. Renewable Energy. (2023) 119070.
[120] M.S. Javed, J. Jurasz, M. Guezgouz, F.A. Canales, T.H. Ruggles, T. Ma*. Impact of multi-annual renewable energy variability on the optimal sizing of off-grid systems. Renewable and Sustainable Energy Reviews. 183 (2023) 113514.
[119] G. Asefi, T. Ma, R. Wang. Techno-economic evaluation of photovoltaic thermal system integrated with porous phase change materials: Case studies in China. Energy Conversion and Management. 290 (2023) 117227.
[118] Y. Zhang, T. Ma*, H. Yang, Z. Li, Y. Wang. Simulation and experimental study on the energy performance of a pre-fabricated photovoltaic pavement. Applied Energy. 342 (2023) 121122.
[117] Y. Zhao, P. Xue*, C. Fan, B. Li, N. Zhang, T. Ma, et al. Data mining techniques for novel local reference solar irradiance spectra calculations: A case study in Beijing. Solar Energy. 258 (2023) 106-17.
[116] K. Shono, Y. Yamaguchi, U. Perwez, T. Ma, Y. Dai, Y. Shimoda. Large-scale building-integrated photovoltaics installation on building fa?ades: Hourly resolution analysis using commercial building stock in Tokyo, Japan. Solar Energy. 253 (2023) 137-53.
[115] Z. Li, S. Li, T. Ma*. Using Photonic Glasses as Colored Covers for Solar Energy Harvesting. Advanced Optical Materials. 11 (2023) 2202370.
[114] J. Liu, T. Ma, H. Wu, H. Yang. Study on optimum energy fuel mix for urban cities integrated with pumped hydro storage and green vehicles. Applied Energy. 331 (2023) 120399.
[113] S. Li, T. Ma*, D. Wang. Photovoltaic pavement and solar road: A review and perspectives. Sustainable Energy Technologies and Assessments. 55 (2023) 102933.
[112] X. Feng, T. Ma*, Y. Yamaguchi, J. Peng, Y. Dai, D. Ji. Potential of residential building integrated photovoltaic systems in different regions of China. Energy for Sustainable Development. 72 (2023) 19-32.
[111] B. Zou, J. Peng*, R. Yin, Z. Luo, J. Song, T. Ma, et al. Energy management of the grid-connected residential photovoltaic-battery system using model predictive control coupled with dynamic programming. Energy and Buildings. 279 (2023) 112712.
[110] F. Zhao, Z. Li, D. Wang, T. Ma*. Peer-to-peer energy sharing with demand-side management for fair revenue distribution and stable grid interaction in the photovoltaic community. Journal of Cleaner Production. 383 (2023) 135271.
[109] F. Zhao, Z. Li, G. Xiao, Y. Li, S. Ahmed, T. Ma*. Techno-economic comparison of P2P energy sharing and residential battery storage in the photovoltaic community. International Journal of Green Energy. (2023) 1-17.
[108] Y. Zhang, T. Ma*, H. Yang. A review on capacity sizing and operation strategy of grid-connected photovoltaic battery systems. Energy and Built Environment. (2023).
[107] A. Kazemian, M. Khatibi, T. Ma*, J. Peng, Y. Hongxing. A thermal performance-enhancing strategy of photovoltaic thermal systems by applying surface area partially covered by solar cells. Applied Energy. 329 (2023) 120209.
[106] K. Khosravi, H. I. Mohammed, J. M. Mahdi, M. Silakhori, M. Ebrahimnataj, A. Kazemian, T. Ma*, P. Talebizadehsardari, Optimizing performance of water-cooled photovoltaic-thermal modules: a 3D numerical approach, Solar Energy 264 (2023) 112025
[105] S. Wang, J. Peng*, M. Wang, P. Xue, Y. Luo, T. Ma, Y. Zhao, Evaluation of the energy conversion performance of different photovoltaic materials with measured solar spectral irradiance, Renewable Energy, 219 (2023) 119431
[104] Y. Tan, J. Peng*, Z. Luo, Y. Luo, T. Ma, J. Ji, H. Yang, F. Wang, M. Zhu, Multi-function partitioned design method for photovoltaic curtain wall integrated with vacuum glazing towards zero-energy buildings, Renewable Energy, 218 (2023), 119257
【2022】
[103] Z. Li, T. Ma*, S. Li, W. Gu, L. Lu, H. Yang, Y. Dai, R. Wang*, High-Efficiency, Mass-Producible, and Colored Solar Photovoltaics Enabled by Self-Assembled Photonic Glass, ACS Nano, 2022 16 (7), 11473-11482
[102] T. Ma*, A. Kazemian, A. Habibollahzade, A. Salari, W. Gu, J. Peng, A comparative study on bifacial photovoltaic/thermal modules with various cooling methods, Energy Conversion and Management. 263 (2022), 115555.
[101] T. Ma*, Y. Zhang, W. Gu, G. Xiao, H. Yang, S. Wang*, Strategy comparison and techno-economic evaluation of a grid-connected photovoltaic-battery system, Renewable Energy, 197 (2022), 1049-1060
[100] T. Ma*, S. Li, W. Gu, S. Weng, J. Peng, G. Xiao, Solar energy harvesting pavements on the road comparative study and performance assessment, Sustainable Cities and Society, 81 (2022) 103868
[100] M. Javed, J. Jurasz, M. McPherson., Y. Dai, T. Ma*, Quantitative evaluation of renewable-energy-based remote microgrids: curtailment, load shifting, and reliability, Renewable and Sustainable Energy Reviews, 164 (2022) 112516
[99] Z. Li, T. Ma*, Theoretic efficiency limit and design criteria of solar photovoltaics with high visual perceptibility, Applied Energy, 324 (2022), 119761
[98] S. Ahmed, S. Li, Z. Li, G. Xiao, T. Ma*. Enhanced radiative cooling of solar cells by integration with heat pipe, Applied Energy, 308 (2022), 118363
[97] A Kazemian, A. Salari, T. Ma*, H. Lu, Application of hybrid nanofluids in a novel combined photovoltaic/thermal and solar collector system, Solar Energy, 239 (2022), 102-116
[96] G. Asefi, T. Ma*, R. Wang. Parametric investigation of photovoltaic-thermal systems integrated with porous phase change material, Applied Thermal Engineering, 117727
[954] X. Feng, T. Ma*, Solar photovoltaic system under partial shading and perspectives on maximum utilization of the shaded land, International Journal of Green Energy, 2022
[93] S. Li, W. Gu, X. Liu, Y. Zhou, Z. Chen, X. Zhang*, T. Ma*. Pavement integrated photovoltaic thermal (PIPVT) system: A temporal and spatial analysis of energy and exergy performance, Journal of Cleaner Production, 340 (2022) 130782
[92] J. Jurasz*, A. Piaseckib, J. Hunt, W. Zheng, T. Ma, A. Kiesg, Building integrated pumped-storage potential on a city scale: An analysis based on geographic information systems, Energy, 242 (2022), 122966
[91] T. Ma*, L. Shen, The analysis of energy distribution of photovoltaic module under non-standard test condition, Acta Energiae Solaris Sinica, 2022 (in Chinese)
[94] J. Kang*, S. Weng, Y. Li, T Ma, Study of Building Demand Response Method Based on Indoor Temperature Setpoint Control of VRV Air Conditioning, Buildings 12 (2022), 415
[93] Y. Li, J. Peng*, H. Jia, B. Zou, B. Hao, T. Ma, X. Wang, Optimal battery schedule for grid-connected photovoltaic-battery systems of office buildings based on a dynamic programming algorithm, Journal of Energy Storage, 50(2022) 50 104557
[92] Y. Lai, Y. Li*, X. Feng, T. Ma, Green retrofit of existing residential buildings in China An investigation on residents’ perceptions. Energy & Environment, 33 (2022) .
[91] U. Perwez*, Y. Yamaguchi*, T. Ma, Y. Dai, Y. Shimoda, Multi-scale GIS-synthetic hybrid approach for the development of commercial building stock energy model, Applied Energy, 323 (2022) 119526
[906] H. Zhou, J. Peng*, H. Wilson, M. Wang, J. Jonsson, T. Ma, B. Wu, B. Wu, G Fu, Investigation of decoupling of thermal and electrical performance of semi-transparent photovoltaic windows based on the external quantum efficiency, Energy and Buildings, 277 (2022) 112539
[89] S. Li, J. Peng*, H. Li, B. Zou, J. Song, T. Ma, J. Ji, Zero energy potential of PV direct-driven air conditioners coupled with phase change materials and load flexibility, Renewable Energy, 200 (2022) 419-432
[88] P. Xue*, H. Wang, T. Luo, Y. Zhao, C. Fan, T. Ma, Clear sky color modeling based on BP neural network, Building and Environment, 226 (2022) 109715
【2021】
[87] T. Ma*, Z. Guo, L. Shen, X. Liu, Z. Chen, Y. Zhou, et al. Performance Modelling of Photovoltaic Modules under Actual Operating Conditions Considering Loss Mechanism and Energy Distribution. Applied Energy. 298 (2021) 117205.
[86] M.S. Javed, T. Ma*, J. Jurasz, F.A. Canales, S. Lin, S. Ahmed, et al. Economic analysis and optimization of a renewable energy based power supply system with different energy storages for a remote island. Renewable Energy. 164 (2021) 1376-94. (ESI Highly Cited Paper)
[85] Z. Li, T. Ma*, H. Yang, L. Lu, R. Wang. Transparent and Colored Solar Photovoltaics for Building Integration. Solar RRL. 5 (2021) 2000614.
[84] S. Ahmed, Z. Li, M.S. Javed, T. Ma*. A review on the integration of radiative cooling and solar energy harvesting. Materials Today Energy. 21 (2021) 100776.
[83] M. Javed, Z. Li, S. Ahmed, T. Ma*, Quantifying Techno-economic Indicators' Impact on Isolated Renewable Energy Systems, iScience, 24 (7) 2021.
[82] Z. Li, S. Ahmed, T. Ma*. Investigating the Effect of Radiative Cooling on the Operating Temperature of Photovoltaic Modules. Solar RRL. 5 (2021) 2000735.
[81] S. Ahmed, Z. Li, T. Ma*, M.S. Javed, H. Yang. A comparative performance evaluation and sensitivity analysis of a photovoltaic-thermal system with radiative cooling. Solar Energy Materials and Solar Cells. 221 (2021) 110861.
[80] S. Li, Z. Chen, X. Liu, X. Zhang, Y. Zhou, W. Gu, T. Ma*. Numerical simulation of a novel pavement integrated photovoltaic thermal (PIPVT) module. Applied Energy. 283 (2021) 116287.
[79] M. Khatibi, R. Nemati-Farouji, A. Taheri, A. Kazemian, T. Ma*, H. Niazmand. Optimization and performance investigation of the solidification behavior of nano-enhanced phase change materials in triplex-tube and shell-and-tube energy storage units. Journal of Energy Storage. 33 (2021) 102055.
[78] A. Kazemian, A. Parcheforosh, A. Salari, T. Ma*. Optimization of a novel photovoltaic thermal module in series with a solar collector using Taguchi based grey relational analysis. Solar Energy. 215 (2021) 492-507.
[77] A. Kazemian, Y. basati, M. Khatibi, T. Ma*. Performance prediction and optimization of a photovoltaic thermal system integrated with phase change material using response surface method. Journal of Cleaner Production. 290 (2021) 125748.
[76] M.S. Javed, T. Ma*, J. Jurasz, J. Mikulik. A hybrid method for scenario-based techno-economic-environmental analysis of off-grid renewable energy systems. Renewable and Sustainable Energy Reviews. 139 (2021) 110725.
[75] W. Gu, S. Li, X. Liu, Z. Chen, X. Zhang, T. Ma*. Experimental investigation of the bifacial photovoltaic module under real conditions. Renewable Energy. 173 (2021) 1111-22.
[74] G. Asefi, A. Habibollahzade, T. Ma*, E. Houshfar, R. Wang. Thermal management of building-integrated photovoltaic/thermal systems: A comprehensive review. Solar Energy. 216 (2021) 188-210.
[73] A. Kazemian, M. Khatibi, S. Reza Maadi, T. Ma*. Performance optimization of a nanofluid-based photovoltaic thermal system integrated with nano-enhanced phase change material. Applied Energy. In press (2021) 116859.
[72] Z. Li, T. Ma*. Distributed Photovoltaics with Peer-to-Peer Electricity Trading. Energy and Built Environment. In press (2021), e00114
[71] A.B. Kristiansen, B.Y. Zhao, T. Ma, R.Z. Wang. The viability of solar photovoltaic powered off-grid Zero Energy Buildings based on a container home. Journal of Cleaner Production. 286 (2021) 125312.
[70] S. Liu, J. Peng, B. Zou, B. Li, C. Liu, J. Cao, Y. Luo, T. Ma, Zero energy potential of photovoltaic direct-driven air conditioners with considering the load flexibility of air conditioners, Applied Energy, 304 (2021), 117821
[69] Y. Zhang, X. Liu, Z. Chen, X. Zhang*, Y. Zhou, J. Qiu, W. Gu, T. Ma*, Sizing method and operating characteristics of distributed photovoltaic battery system, Huagong Xuebao/CIESC Journal, 72(2021) 503-511 (in Chinese)
[68] W. Gu, Y. Li, Y. Chen, S. Xie, T Ma. Research on Optimal Scheduling of Multi-source Cooling, Heating and Power Cogeneration Systems for Public Buildings and Institutions. Dongli Gongcheng Xuebao/Journal of Chinese Society of Power Engineering. 2021;41 (in Chinese)
【2020】
[67] T. Ma*, M. Li, A. Kazemian. Photovoltaic thermal module and solar thermal collector connected in series to produce electricity and high-grade heat simultaneously. Applied Energy. 261 (2020) 114380.
[66] A. Salari, A. Kazemian, T. Ma*, A. Hakkaki-Fard, J. Peng. Nanofluid based photovoltaic thermal systems integrated with phase change materials: Numerical simulation and thermodynamic analysis. Energy Conversion and Management. 205 (2020) 112384. (ESI Highly Cited Paper)
[65] M.S. Javed, T. Ma*, J. Jurasz, M.Y. Amin. Solar and wind power generation systems with pumped hydro storage: Review and future perspectives. Renewable Energy. 148 (2020) 176-92. (ESI Highly Cited Paper)
[64] M.S. Javed, D. Zhong, T. Ma*, A. Song, S. Ahmed. Hybrid pumped hydro and battery storage for renewable energy based power supply system. Applied Energy. 257 (2020) 114026. (ESI Highly Cited Paper)
[63] Y. Zhang, T. Ma*, P. Elia Campana, Y. Yamaguchi, Y. Dai. A techno-economic sizing method for grid-connected household photovoltaic battery systems. Applied Energy. 269 (2020) 115106.
[62] L. Shen, Z. Li, T. Ma*. Analysis of the power loss and quantification of the energy distribution in PV module. Applied Energy. 260 (2020) 114333.
[61] S. Lin, T. Ma*, M. Shahzad Javed. Prefeasibility study of a distributed photovoltaic system with pumped hydro storage for residential buildings. Energy Conversion and Management. 222 (2020) 113199.
[60] Z. Li, T. Ma*. Peer-to-peer electricity trading in grid-connected residential communities with household distributed photovoltaic. Applied Energy. 278 (2020) 115670.
[59] M. Li, D. Zhong, T. Ma*, A. Kazemian, W. Gu. Photovoltaic thermal module and solar thermal collector connected in series: Energy and exergy analysis. Energy Conversion and Management. 206 (2020) 112479.
[58] A. Kolahan, S.R. Maadi, A. Kazemian, C. Schenone, T. Ma*. Semi-3D transient simulation of a nanofluid-base photovoltaic thermal system integrated with a thermoelectric generator. Energy Conversion and Management. 220 (2020) 113073.
[57] A. Kazemian, A. Taheri, A. Sardarabadi, T. Ma*, M. Passandideh-Fard, J. Peng. Energy, exergy and environmental analysis of glazed and unglazed PVT system integrated with phase change material: An experimental approach. Solar Energy. 201 (2020) 178-89.
[56] A. Kazemian, A. Salari, T. Ma*. A year-round study of a photovoltaic thermal system integrated with phase change material in Shanghai using transient model. Energy Conversion and Management. 210 (2020) 112657.
[55] M.S. Javed, T. Ma*, J. Jurasz, S. Ahmed, J. Mikulik. Performance comparison of heuristic algorithms for optimization of hybrid off-grid renewable energy systems. Energy. 210 (2020) 118599.
[54] W. Gu, T. Ma*, M. Li, L. Shen, Y. Zhang. A coupled optical-electrical-thermal model of the bifacial photovoltaic module. Applied Energy. 258 (2020) 114075.
[53] W. Gu, T. Ma*, S. Ahmed, Y. Zhang, J. Peng. A comprehensive review and outlook of bifacial photovoltaic (bPV) technology. Energy Conversion and Management. 223 (2020) 113283.
[52] A.B. Kristiansen, D. Satola, K. Lee, B. Zhao, T. Ma, R.Z. Wang*, et al. Feasibility study of an off-grid container unit for industrial construction. Sustainable Cities and Society. 61 (2020) 102335.
[51] S. Li, J. Peng*, Y. Tan, T. Ma, X. Li, B. Hao. Study of the application potential of photovoltaic direct-driven air conditioners in different climate zones. Energy and Buildings. 226 (2020) 110387.
[50] H. Lu*, T. Ma, L. Lu. Deposition characteristics of particles in inclined heat exchange channel with surface ribs. International Journal of Heat and Mass Transfer. 161 (2020) 120289.
[49] J. Yan, L. Lu*, T. Ma, Y. Zhou, C.Y. Zhao. Thermal management of the waste energy of a stand-alone hybrid PV-wind-battery power system in Hong Kong. Energy Conversion and Management. 203 (2020) 112261.
[48] D. Satola, A.B. Kristiansen, A. Houlihan-Wiberg, A. Gustavsen, T. Ma, R.Z. Wang*. Comparative life cycle assessment of various energy efficiency designs of a container-based housing unit in China: A case study. Building and Environment. 186 (2020) 107358.
【2019】
[47] T. Ma*, Z. Li, J. Zhao, Photovoltaic panel integrated with phase change materials (PV-PCM): technology overview and materials selection, Renewable and Sustainable Energy Reviews, 116 (2019)
[46] T Ma*, H. Yang et al., Development of walkable photovoltaic floor tiles used for pavement, Energy Conversion and Management, 183 (2019) 764-771.
[45] T Ma*, W. Gu, An improved and comprehensive mathematical model for solar photovoltaic modules under real operating conditions, Solar Energy, 184 (2019) 292-304
[44] T Ma*, M. S. Javed, Integrated sizing of hybrid PV-wind-battery system for remote island considering the saturation of each renewable energy resource, Energy Conversion and Management, 182 (2019) 178-190. ( ESI Highly Cited Paper)
[43] A. Kazemian, T. Ma* et al., Numerical investigation and parametric analysis of a photovoltaic thermal system integrated with phase change material, Applied Energy, 238 (2019) 734-746 (ESI Highly Cited Paper)
[42] J. Zhao, T. Ma*, Z. Li, Year-round performance analysis of photovoltaic panel coupled with phase change material, Applied Energy, 245 (2019) 51-64
[41] M. S. Javed, T Ma*, Techno-economic assessment of a stand-alone hybrid solar-wind-battery system for a remote island using genetic algorithm, Energy, 176 (2019) 704-717
[40] Z. Li, T. Ma*, J. Zhao, Experimental study and performance analysis on solar photovoltaic panel integrated with phase change material, Energy. 178 (2019) 471-486
[39] M. Li, T. Ma* et al., Numerical and experimental investigation of precast concrete facade integrated with solar photovoltaic panels, Applied Energy, 253(2019) 113509.
[38] W. Gu, T Ma*, Mathematical modelling and performance evaluation of a hybrid photovoltaic-thermoelectric system, Energy Conversion and Management 198 (2019) 111800
[37] W. Gu, T Ma*, Coupled electrical-thermal modelling of a photovoltaic module under dynamic conditions, Energy, 188 (2019)
[36] M. Javed, T Ma*, Techno-economic assessment of a hybrid solar-wind-battery system with genetic algorithm, Energy Procedia, 158 (2019) 6384-6392
[35] J. Zhao, Z. Li, T. Ma*, Performance analysis of a photovoltaic panel integrated with phase change material, Energy Procedia, 158 (2019) 1093-1098
[34] A. Kristiansen, T. Ma, R. Wang*, Perspectives on industrialized transportable solar powered zero energy buildings, Renewable and Sustainable Energy Reviews. 108 (2019) 112-124.
[33] M. Guezgou, J. Jurasz, B. Bekkouche, T. Ma, Optimal hybrid pumped hydro-battery storage scheme for off-grid renewable energy systems, Energy Conversion and Management, 199 (2019) 112046
【2018】
[32] T Ma*, J Zhao, Z Li, Mathematical modelling and sensitivity analysis of solar photovoltaic panel integrated with phase change material, Applied Energy, 228 (2018) 1147-1158.
[31] T Ma*, H. Yang, Development of Inline Hydroelectric Generation System from Municipal Water Pipelines. Energy, 144 (2018) 535-548
[30] T. Ge, R. Wang*, Z. Xu, Q. Pan, S.Du, X. Chen, T. Ma et al. Solar heating and cooling: Present and future development, Renewable Energy, 126 (2018) 1126-1140. (ESI Highly Cited Paper)
[29] X. Chen, Y. Li, Z. Zhao, T. Ma, R. Wang*. General method to obtain recommended tilt and azimuth angles for photovoltaic systems worldwide. Solar Energy, 172 (2018): 46-57
【2017】
[28] T. Ma*, H. Yang, L. Lu, Long term performance analysis of a standalone photovoltaic system under real conditions, Applied Energy, 201 (2017) 320-331.
[27] T. Ma*, H. Yang, L. Lu, R. Qi, Feasibility study of developing a zero-carbon-emission Green Deck in Hong Kong. Energy Procedia, 105 (2017) 1155-1159
[26] T. Ma*, J. Zhao, J, Han, A Parametric Study about the Potential to Integrate Phase Change Material into Photovoltaic Panel, Energy Procedia, 142 (2017) 648-654
[25] P. Campana, S. Quan, F. Robbiod, A. Lundblad, Y. Zhang, T. Ma, B. Karlssona, J. Yan, Optimization of a residential district with special consideration on energy and water reliability, Applied Energy, 194 (2017) 751-764
[24] A. Song, L. Lu*, T. Ma, Life-cycle evaluation of different types of cooling systems in buildings, Energy Procedia, 142 (2017) 1743-1748.
【2016】
[23] T. Ma*, H. Yang, L. Lu, Long term performance analysis of a 19.8kWp standalone photovoltaic system in a remote island. Energy Procedia, 103 (2016) 183-188.
[22] P. Campana, S. Quan, F. Robbiod, A. Lundblad, Y. Zhang, T. Ma, et al, Spatial optimization of residential urban district - Energy and water perspectives, Energy Procedia, 88(2016) 38-43.
[21] M. Wang, J. Peng*, N. Li, L. Lu, T. Ma, H. Yang, Assessment of energy performance of semi-transparent PV insulating glass units using a validated simulation model. Energy, 112 (2016) 538-548.
【2015】
[20] T. Ma*, H. Yang, L. Lu, J. Peng, Pumped storage-based standalone photovoltaic power generation system: Modeling and techno-economic optimization, Applied Energy, 137 (2015) 649-659. (ESI Hot Paper, ESI Highly Cited Paper, Applied Energy Journal Highly Cited Original Paper)
[19] T. Ma*, H. Yang, L. Lu, Development of hybrid battery-supercapacitor energy storage for remote area renewable energy systems, Applied Energy. 153 (2015) 56-62. (ESI Highly Cited Paper)
[18] T. Ma*, H. Yang, Y. Zhang, L. Lu and X. Wang, Using phase change materials in photovoltaic systems for thermal regulation and electrical efficiency improvement: a review and outlook. Renewable and Sustainable Energy Reviews. 43 (2015) 1273-1284. (ESI Highly Cited Paper)
[17] T. Ma*, H. Yang, L. Lu, J. Peng, Optimal design of an autonomous solar-wind-pumped storage power supply system. Applied Energy. 160 (2015) 728-736.
[16] T. Ma*, H. Yang, L. Lu, Study on stand-alone power supply options for an isolated community, International Journal of Electrical Power & Energy Systems, 65 (2015) 1-11.
[15] J. Peng, L. Lu*, H. Yang, T. Ma, Comparative study of the thermal and power performances of a semi-transparent photovoltaic fa?ade under different ventilation modes, Applied Energy, 138 (2015) 572-583.
[14] J. Peng, L. Lu*, H. Yang, T. Ma, Validation of the Sandia model with indoor and outdoor measurements for semi-transparent amorphous silicon PV modules, Renewable Energy. 80 (2015) 316-323.
【2014】
[13] T. Ma*, H. Yang, L. Lu, A feasibility study of a stand-alone hybrid solar–wind–battery system for a remote island, Applied Energy, 121 (2014) 149-158. (ESI Hot Paper, ESI Highly Cited Paper, Applied Energy Journal Highly Cited Original Paper)
[12] T. Ma*, H. Yang, L. Lu, Feasibility study and economic analysis of pumped hydro storage and battery storage for a renewable energy powered island, Energy Conversion and Management, 79 (2014) 387-397. (ESI Highly Cited Paper)
[11] T. Ma*, H. Yang, L. Lu, J. Peng, Technical feasibility study on a standalone hybrid solar-wind system with pumped hydro storage for a remote island in Hong Kong, Renewable Energy, 69 (2014) 7-15. (ESI Highly Cited Paper)
[10] T. Ma*, H. Yang, L. Lu, Development of a model to simulate the performance characteristics of crystalline silicon photovoltaic modules/strings/arrays, Solar Energy, 100 (2014) 31-41. (ESI Highly Cited Paper)
[9] T. Ma*, H. Yang, L. Lu, Solar photovoltaic system modeling and performance prediction, Renewable and Sustainable Energy Reviews, 36 (2014) 304-315.
[8] T. Ma*, P.A. ?stergaard, H. Lund, H. Yang, L. Lu, An energy system model for Hong Kong in 2020, Energy, 68 (2014) 301-310.
[7] T. Ma*, H. Yang, L. Lu, J. Peng, An Optimization Sizing Model for Solar Photovoltaic Power Generation System with Pumped Storage. Energy Procedia, 61(2014) 5-8.
[6] J. Peng, L. Lu*, H. Yang, T Ma, K. Ho, P. Law, Investigating the Shading Impact of Rail on the Energy Output of a PV System in Hong Kong, International Journal of Sustainable Energy Development 3 (2014), 148-153.
【2013】
[1] T. Ma*, H. Yang, L. Lu, Performance evaluation of a stand-alone photovoltaic system on an isolated island in Hong Kong, Applied Energy, 112 (2013) 663-672.
二、專著:
[6] M. Javeda, T. Ma, J. Jurasz, I. Khan and M Iqbal. Designing hybrid systems operation in the context of resources complementarity, Complementarity of Variable Renewable Energy Sources, Elsevier 2022
[5] T. Ma, L. Shen. Electrical Energy Storage for Buildings, Handbook of Energy Systems in Green Buildings, Springer 2017
[4] R. Wang, Y. Li, T. Ma et al. New Energy Systems, Beijing: China Machine Press, 2021 (in Chinese)
[3] M.S. Javed, T. Ma, J. Jurasz, I. Khan, M. Iqbal. Designing hybrid systems operation in the context of resources complementarity, Complementarity of Variable Renewable Energy Sources, Elsevier, 2022
[2] H. Yang, L. Lu, T. Ma. Application of Hybrid Solar-Wind Power Generation Technologies. Beijing: China Architecture & Building Press. 2015. (in Chinese)
[1] H. Yang, X. Gao, T. Ma, X. Guo, D. Liu. Wind energy conversion systems, Handbook of Clean Energy System. New York: Wiley, 2015.
2025年 科睿唯安(Clarivate)全球高被引科學家(工程領域)
2021-2024年 連續(xù)4年入選愛思唯爾(Elsevier)中國高被引學者
2020-2024年 連續(xù)5年入選斯坦福大學全球前2%頂尖科學家(“生涯影響力”和“年度影響力”兩大榜單)
2024年 中國可再生能源學會青年科技獎
2024年 Rising Star of Science Award
2024年 Highly Ranked Scholar (Top 0.05%) in ‘Photovoltaic & Energy’
2023年 國家教學成果二等獎
2020年 上海交通大學‘晨星學者’
2019年 Energy and Built Environment優(yōu)秀青年學者獎
2018年 Publons Top Reviewer (前1%)
2018年 上海市浦江人才計劃(A類)
2018年 “Applied Energy” 高被引論文獎(Highly Cited Paper Award)
2017年 紐倫堡國際發(fā)明金獎
2017年 上海交通大學優(yōu)秀班主任
2017年 “Renewable & Sustainable Energy Reviews”,“Energy”和“Applied Thermal Engineering”優(yōu)秀審稿人(Outstanding Reviewer Award)
2016年 “Applied Energy”和“Solar Energy”優(yōu)秀審稿人(Outstanding Reviewer Award)
2016年 上海市科協(xié)“飛翔計劃”
2016年 湯森路透高被引學者獎(Thomson Reuters Highly Cited Researcher Award)
2016年 “Applied Energy” 高被引論文獎(Highly Cited Paper Award)
2015年 香港理工大學優(yōu)秀博士論文(Outstanding PhD Thesis Award)
2015年 “Energy Conversion and Management” 優(yōu)秀審稿人(Outstanding Reviewer Award)
2013年 亞太經(jīng)濟合作組織低碳城鎮(zhèn)與物理儲能國際會議上最佳論文獎(Best Paper Award)
2006-2010年 國家獎學金、國家勵志獎學金、米塔爾”獎學金、首屆“比亞迪”獎學金、中南大學一等獎學金等
人才培養(yǎng)(研究生):
2025年,23級研究生戴蒼彬、許笑杰獲得上海交通大學優(yōu)秀畢業(yè)生
2024年,21級博士生李貞鵬獲得院優(yōu)秀博士論文獎
2024年,23級碩士生林煒健獲得國家獎學金
2022年,21級博士生李貞鵬獲得國家獎學金
2021年,19級碩士生李森濟獲得國家獎學金,入選上海市優(yōu)秀畢業(yè)生
2021年,19級碩士生李貞鵬活動的夏安世獎學金(四位研究生中唯一碩士生)
2021年,17級博士生Arash kazemian獲得上海交通大學優(yōu)秀畢業(yè)生(留學生),獲留學生風采人物獎(提名)
2020年,18級碩士生張怡潔獲得國家獎學金,入選上海市優(yōu)秀畢業(yè)生
2020年,19級碩士生李貞鵬獲得國家獎學金
2020年,19級博士生Muhammad ShahzadJaved獲教育部優(yōu)秀來華留學生獎
2020年,19級碩士生Salman Ahmed獲得留學生風采人物獎,入選上海交通大學優(yōu)秀畢業(yè)生(留學生)
人才培養(yǎng)(本科生):
2024年,指導戴溪亭獲得莙政學者
2023年,指導趙冰怡獲得莙政學者
2023年,指導1項全國大學生節(jié)能減排競賽分別獲得三等獎(王亦可等)
2022年,指導李濤獲得教育部能動類專業(yè)“百篇優(yōu)秀畢業(yè)論文”
2020年,指導2項全國大學生節(jié)能減排競賽分別獲得一等獎(陳冰開等)和二等獎(向思磊等)
2020年,指導馮忻怡獲得蒙民偉獎學金,撰寫1篇SCI論文
2019年,指導李貞鵬在本科階段發(fā)表SCI論文2篇,獲得國家獎學金、唐立新獎學金等,入選上海市優(yōu)秀畢業(yè)生
2019年,指導1項全國大學生節(jié)能減排競賽獲得三等獎(陳秋文等)
2018年,指導趙家鑫獲得‘羅德學者’(被外界視作本科生的諾貝爾獎,交大首位工科學生獲此殊榮);指導發(fā)表SCI論文2篇,獲得校長獎、國家獎學金和上海市榮昶學者等