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主要发表论文(英文)

[1] Li Sheng, HuarongXie, YanMa, Shuichi Hokoi, YonghuiLi(*),.Assessing the deterioration risk of polychrome clay sculptures based on the hygrothermal environment: A case study of Baosheng temple, China. Case Studies in Construction Materials 17(2): e01287.DOI: 10.1016/j.cscm.2022.e01287

[2] Yong-hui Li(*),Ji-dong Gu(*). A more accurate definition of water characteristics in stone materials for an improved understanding and effective protection of cultural heritage from biodeterioration. International Biodeterioration & Biodegradation 166 (2022) 105338. https://doi.org/10.1016/j.ibiod.2021.105338

[3] Yonghui Li(#)(*), Zhenyi Kong, Huarong Xie, Yan Ma, Baogang Mu, Shuichi Hokoi. Construction type influences features of rising damp of blue-brick masonry walls. Construction and Building Materials 284 (2021): 122791. https://doi.org/10.1016/j.conbuildmat.2021.122791

[4] Yonghui Li(*), Changchang Xia, Ruobin Wu, Yan Ma, Baogang Mu, Tianwen Wang, Evangelos Petropoulos, Shuichi Hokoi. Role of the urban plant environment in the sustainable protection of an ancient city wall, Building and Environment 187 (2021): 107405. https://doi.org/10.1016/j.buildenv.2020.107405

[5] Yonghui Li(#)(*), Yan Ma, Huarong Xie, Jiaomin Li, Xinjian Li. Cross validation of hygrothermal properties of historical Chinese blue bricks with isothermal sorption experiments. Frontiers of Architectural Research (2021),10(1):164-175. https://doi.org/10.1016/j.foar.2020.09.003

[6] Yonghui Li(#)(*), Zhi Huang, Evangelos Petropoulos, Yan Ma, Yang Shen. Humidity Governs the Wall-inhabiting Fungal Community Composition in a 1600-year Tomb of Emperor Yang. Scientific Reports, (2020) 10(1):8421. https://doi.org/10.1038/s41598-020-65478-z

[7] Yonghui Li(#)(*), Ruobin Wu, Huarong Xie, Guoli Zhao, Xinyuan Dang, Shuichi Hokoi. Water film in very high humidity inhibits mold growth on the damp surface of soil ruins. Building and Environment 181(2020):107073. https://doi.org/10.1016/j.buildenv.2020.107073

[8] Li, Yonghui(#)(*),Huarong Xie, Daisuke Ogura, Shi Hu, Qinglin Guo. Quantitative Analysis of Mold Growth Differences on Surfaces in Damp Soil Ruins Affected by Ventilation and Lighting Modes: Soil Ruin Exhibition Halls in High-humidity Regions. Journal of Asian Architecture and Building Engineering, 2016.1.01, 15(1): 133~138. https://doi.org/10.3130/jaabe.15.133

[9] Yonghui Li(#)(*), Yumai Feng, Zhenyi Kong, Shuichi Hokoi. Optimization and Assessment of the Protective Shed of the Eastern Wu Tomb. Energies 2020, 13(7), 1652. https://doi.org/10.3390/en13071652

[10] Yonghui Li(#), Xinyuan Dang, Changchang Xia, Yan Ma, Daisuke Ogura, Shuichi Hokoi(*). The Effect of Air leakage through the Air Cavities of Building Walls on Mold Growth Risks. Energies 2020, 13(5), 1177. https://doi.org/10.3390/en13051177

[11] Li, Yonghui(#)(*), Daisuke Ogura, Shuichi Hokoi, Jianguo Wang, Takeshi Ishizaki. Predicting Hygrothermal Behavior of an Underground Stone Chamber with 3-D Modeling to Restrain Water-Related Damage to Mural Paintings. Journal of Asian Architecture and Building Engineering, 2014.5, 13(2): 499~506. https://doi.org/10.3130/jaabe.13.499

[12] Yonghui Li(#)(*), Huarong Xie, Jianguo Wang, Xinjian Li. Experimental study of the isothermal sorption properties of late Qing and 1980s grey bricks in Wujiang, Suzhou, China, Frontiers of Architectural Research, 2013.12, 2(4): 483~487. https://doi.org/10.1016/j.foar.2013.08.006

[13] Yonghui Li(#)(*), Daisuke Ogura. Study on conservation of mural paintings in Tumulus: Numerical analysis of heat behaviors of stone chamber after excavation, Frontiers of Architectural Research, 2012.12, 1(4): 375~379. https://doi.org/10.1016/j.foar.2012.09.002

[14] Yonghui Li(#)(*),Daisuke Ogura, Shuichi Hokoi, Takeshi Ishizaki. Effects of emergency preservation measures following excavation of mural paintings in Takamatsuzuka Tumulus. Journal of Building Physics, 2012.10, 36(2): 117~139. https://doi.org/10.1177/1744259112455396

[15] Yu Pei, Ruobin Wu, Huarong Xie, Yan Ma, Yongqiang Yue, Yonghui Li*, Hokoi Shuichi. Visitor Pattern Design of Maijishan Grottoes Based on Risk Assessment of Deteriorations Related to Hygrothermal Environment[C]. 5th Central European Symposium on Building Physics (CESBP 2022). Bratislava, Slovakia. 2022.9.5-9.7

[16] Changchang Xia, Diandian Liu, Zhenyi Kong, Huarong Xie, Shuichi Hokoi, Yonghui Li*. Correlation Analysis between Hygrothermal Environment and Mural Diseases Distribution in a Chinese Emperor Tomb[C]. 5th Central European Symposium on Building Physics (CESBP 2022) . Bratislava, Slovakia. 2022.9.5-9.7.

[17] Huarong Xie, Jiasheng Pan, Yu Pei, Yonghui Li*, Shuichi Hokoi, Ning Liu. Assessment for Hygrothermal Environment of Raw Earth Residential Building in Southwest China[C]. 5th Central European Symposium on Building Physics (CESBP 2022). Bratislava, Slovakia. 2022.9.5-9.7.

[18] Zun Zhu, Huarong Xie, Yonghui Li*, Shuichi Hokoi. Differences in the Mould Growth Risk in Residences in Four Cities, Southeast China[C]. 5th Central European Symposium on Building Physics (CESBP 2022). Bratislava, Slovakia. 2022.9.5-9.7.

[19] Long Shen, Huarong Xie, Xiaohan Chen, Shuichi Hokoi, Yonghui Li*. Research on algal growth difference on the surface of stone carvings based on field investigation and simulation[C]. 5th Central European Symposium on Building Physics (CESBP 2022). Bratislava, Slovakia. 2022.9.5-9.7

[20] Zhenyi Kong, Huarong Xie, Yike Cai, Xue Tan, Shuichi Hokoi, Yonghui Li*. The effect of rising damp on heat transfer performance and energy consumption of two kinds of Chinese blue-brick masonry walls[J]. Journal of Physics: Conference Series. 2021,2069:012038. 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.https://doi.org/10.1088/1742-6596/2069/1/012038

[21] Xiaohan Zhou, Huarong Xie, Yu Pei, Wenjing Liu, Shuichi Hokoi, Yonghui Li*. Effects of different light wavelengths on mold growth in tomb[J]. Journal of Physics: Conference Series. 2021,2069:012014. https://doi.org/10.1088/1742-6596/2069/1/012014. 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.

[22] Yike Cai, Huarong Xie, Yan Ma, Shuichi Hokoi, Yonghui Li*. Active Environmental Control Strategies for Brick Historical Buildings, Combining Heritage Conservation and Thermal Comfort[J]. Journal of Physics: Conference Series. 2021,2069:012080. 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.https://doi.org/10.1088/1742-6596/2069/1/012080

[23] Ruobin Wu, Yan Ma, Huarong Xie, Shuichi Hokoi, Yongqiang Yue, Yonghui Li*. Assessment of Deterioration Risk of Maijishan Grotto under the Radiation Difference Based on Heat and Moisture Transfer Model [J]. Journal of Physics: Conference Series. 2021,2069:012082. 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.https://doi.org/10.1088/1742-6596/2069/1/012082

[24] Qihua Xie, Yonghui Li, Yan Ma, Shuichi Hokoi, Huarong Xie*. Hygrothermal Evaluation of Waterline Rising of a Masonry Tower based on Measurements and Simulations[J]. Journal of Physics: Conference Series. 2021,2069:012083. https://doi.org/10.1088/1742-6596/2069/1/012083. 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.

[25] Guoli Zhao, Huarong Xie, Changchang Xia, Shuichi Hokoi, Yonghui Li*. Heat, Moisture and Airflow coupled Model for Historical Building[J]. Journal of Physics: Conference Series. 2021,2069:012139. https://doi.org/10.1088/1742-6596/2069/1/012139 . 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.

[26] Yuan Ying, Pengcheng Shi, Yanan Li, Xue Tan, Yonghui Li, Shuichi Hokoi*. Study on a thermophysiological model for health assessment of showering environment in China[J]. Journal of Physics: Conference Series. 2021,2069:012179. https://doi.org/10.1088/1742-6596/2069/1/012179 . 8th International Building Physics Conference (IBPC 2021) 25-27 August 2021, Copenhagen, Denmark.

[27] Yonghui Li(#)(*), Weilun Zhang, Ruobin Wu, Xinyuan Dang, Shuichi Hokoi. High Air Relative Humidity and Lighting Modes Govern Mould Growths on Damp Soil Ruins’ Surface in High-Humidity Regions. E3S Web of Conferences 172, 23010 (2020). https://doi.org/10.1051/e3sconf/202017223010

[28] Yan Ma, Yonghui Li(*), Shuichi Hokoi, Xiaogu Zhang. Prediction of Ventilation Effects on Reducing Moisture Damage in Tishun Tang in the Palace Museum in Beijing, China. E3S Web of Conferences 172, 15010(2020). https://doi.org/10.1051/e3sconf/202017215010

[29] Pengcheng Shi, Yonghui Li, Yuan Ying, Shuichi Hokoi(*). Survey on Thermal Environments in Bathrooms and Elderly Behavior While Bathing in Old Residential Buildings in Nanjing, China. E3S Web of Conferences 172, 15009 (2020). https://doi.org/10.1051/e3sconf/202017215009

[30] Xinyuan Dang, Shuichi Hokoi(*), Yonghui Li, Changchang Xia, Ma Yan. Evaluation of mould growth risks due to air leakage through air cavity of the building walls. MATEC Web of Conferences, 2019, 282:02060. https://doi.org/10.1051/matecconf/201928202060

[31] Yan Ma, Zhenyi Kong, Li Yonghui(*), Xiaogu Zhang, Shuichi Hokoi, Xiuzhang Fu. Quantitative evaluation of deterioration in west wind-room in the Palace Museum. MATEC Web of Conferences, 2019, 282:02092. https://doi.org/10.1051/matecconf/201928202092

[32] Yumai Feng, Li Yonghui(*), Shuichi Hokoi, Na Dou. Research on optimization and assessment of protection shed for the Sun Wu tomb based on microbiological damage control. MATEC Web of Conferences, 2019, 282:02096.https://doi.org/10.1051/matecconf/201928202096

[33] Zhenyi Kong(*), Li Yonghui, Shuichi Hokoi, Shi Hu. The rising damp in two traditional clay-brick masonry walls and influence on heat transfer performance. MATEC Web of Conferences, 2019, 282:02097. https://doi.org/10.1051/matecconf/201928202097

[34] Changchang Xia, Zhenyi Kong, Shuichi Hokoi, Bo Ding, Tianwen Wang, Yonghui Li. Hygrothermal Regulation of Brick Masonry of Nanjing City Wall by Plants. XV International Conference on Durability of Building Materials and Components. 2020.09.25. https://doi.org/10.23967/dbmc.2020.239

[35] Yonghui Li(#)(*).Quantitative analysis of emergency preservation measures following excavation of mural paintings in Takamatuzuka Tumulus. 5th international building Physics conference, Kyoto, Japan, 2012.5.28-2012.5.31

[36] Huarong Xie, Yonghui Li (*).Quantitative analysis of mold growth differences on surfaces in damp soil ruins affected by ventilation and lighting modes: Soil ruin exhibition halls in high-humidity regions. 6th International Building Physics Conference, Turin, 2015.6.14-2015.6.17

主要发表论文(中文)

[1] 李永辉(*),赵国利,蔡宜可,张宏,新型冠状病毒传播在建筑环境控制中的影响和防护建议,新建筑,2021(3):147-151

[2] 马琰, 李永辉(*), 刘志军. 室内霉菌污染的环境成因与健康人居. 新建筑, 2019.05, 186: 28~31

[3] 鉾井修一, 李永辉(*), 建筑热环境对人体热生理反应的影响与实验模拟研究. 新建筑, 2019.05, 186: 18~22

[4] 李永辉(#)(*), 蔡宜可, 谢华荣, 张杰. 温州谯楼遗址不同年代青砖等温吸湿特性比较. 东南大学学报(自然科学版), 2020, 50(02): 327~333. https://doi.org/10.3969/j.issn.1001-0505.2020.02.017

[5] 李永辉(#)(*). 从原址保护到转移保护--日本高松冢古墓壁画.世界遗产,2015.1.30,1-2(39): 260~263

[6] 李永辉(#)(*), 谢华荣, 王建国, 石邢.历史建筑中传统青砖等温吸湿性能比较研究.建筑材料学报,2014.12.1,17(6): 1092~1095

[7] 李永辉(#)(*), 谢华荣, 王建国, 李新建, 吴锦绣.苏州吴江近现代青砖等温吸湿性能实验研究.东南大学学报(自然科学版),2014,(02): 441~444

[8] 李永辉(#)(*), 谢华荣, 白颖. 南京大报恩寺土遗址临时保护工程方案设计.文物保护工程,2013.7.1,3(35): 40~46

学生学位论文

[1]沈隆, 基于微生物劣化控制的江南地区石刻保护研究, 东南大学, 2022.05

[2]周晓晗, 原位光环境下墓葬砖石表面微生物繁殖规律研究——以南唐二陵为例, 东南大学, 2022.05

[3]朱尊, 江南地区砖混建筑底层及地下空间防潮防霉技术研究, 东南大学, 2022.05

[4]盛励, 南方高湿地区的泥塑保存环境评估与改造优化, 东南大学, 2022.05

[5]李亚楠, 基于冰点降低理论的砖砌体冻融劣化评估方法研究, 东南大学, 2022.05

[6]赵国利, 基于μHAM-CFD瞬态耦合模型的南唐二陵壁画原位环境特征研究, 东南大学, 2021.05

[7]蔡宜可, 舒适性需求驱动下的开放类古建筑供暖与保护策略研究, 东南大学, 2021.05

[8]武若斌, 麦积山石窟千佛廊本体劣化风险评估与保护研究, 东南大学, 2021.05

[9]解麒华, 西安大雁塔底层墙体劣化风险评估与预测研究, 东南大学, 2021.05

[10]冯钰脉, 基于微生物劣化控制的上坊孙吴墓保护棚优化与评估研究, 东南大学, 2020.08(江苏省优秀硕士学位论文)

[11]夏畅畅, 周边乔木热湿调节作用缓解城墙表面风化研究, 东南大学, 2020.08

[12]张伟轮, 建筑遗产本体水热迁移特征分析与应用, 东南大学, 2020.08

[13]党新元, 建筑墙体缝隙空气渗透霉菌滋生风险研究, 东南大学, 2020.08

[14]石鹏程, 基于人体热生理变化下的住宅沐浴间环境控制策略研究, 东南大学, 2020.08

[15]孔振懿, 潮湿地区砖构建筑遗产典型墙体传热传湿实验研究, 东南大学, 2019.08

[16]马琰, 北京故宫养心殿建筑依存环境风险评估与调控研究, 东南大学, 2018.09(2020年度东南大学优秀硕士学位论文)

[17]窦娜, 砖构考古遗址保护与展示设施的环境控制研究——以南京上坊孙吴墓为例, 东南大学, 2018.06

[18]谢华荣, 基于水热迁移分析的中国传统青砖劣化机理研究, 东南大学, 2015.06(2017年度江苏省优秀学术学位硕士学位论文)