论文: |
著作
[1]《绿色生态村镇环境指标体系及评估标准》,同济大学出版社,学术专著,2018
[2]《医院建筑绿色改造工程案例集》,中国建筑工业出版社,参编,2015
[3]《农村太阳能利用技术应用指南》,中国建筑工业出版社,参编,2018
[4]《绿色生态村镇规划方法、理论与技术》,中国建筑工业出版社,参编,2018
[5]《地铁车站高效空调系统设计方法与能效评价》,中国建筑工业出版社,参著,2019
发表学术论文60余篇,其中SCI/EI检索40余篇,主要如下:
[1] Xing Su*, Yixiang Huang, Lei Wang, Shaochen Tian, Yanping Luo. Operating optimization of air-conditioning water system in a subway station using data mining and dynamic system models. Journal of Building Engineering. 2021, 44; 103379.
[2] Shaochen Tian, Xing Su*, He Li, Yixiang Huang. Using a coupled heat pump desiccant wheel system to improve indoor humidity environment of nZEB in Shanghai: Analysis and optimization. Building and Environment. 2021, 206; 108391.
[3] Xing Su*, Xiaolu Shao, Shaochen Tian, He Li, Yixiang Huang. Life cycle assessment comparison of three typical energy utilization ways for corn stover in China. Biomass and Bioenergy. 2021, 152; 106199.
[4] Yixiang Huang, Xing Su*, Xiaoyan Wu, Wei Ye, Xu Zhang*. Dynamic thermal performance analysis for fin-concrete ceiling in main control rooms of passive nuclear power plants. Case Studies in Thermal Engineering. 2021, 28; 101402.
[5] Xing Su*, Shaochen Tian, He Li, Xu Zhang, Xiaolu Shao, Jun Gao, Hai Ye. Thermal and humid environment improvement of the protective clothing for medical use with a portable cooling device: analysis of air supply parameters. Energy and Buildings. 2021, 240; 110909.
[6] Xing Su*, Shaochen Tian, Xiaolu Shao, Xu Zhang. Experimental and numerical study on low temperature regeneration desiccant wheel: Parameter analysis with a comprehensive energy index. International Journal of Refrigeration. 2020, 120: 237-247.
[7] Xing Su*, Shaochen Tian, Xiaolu Shao, Xuan Zhao. Embodied and operational energy and carbon emissions of passive building in HSCW zone in China: A case study. Energy and Buildings. 2020, 222; 110090.
[8] Shaochen Tian, Xing Su*, Xiaolu Shao, Lei Wang. Optimization and evaluation of a hybrid solar energy, heat pump and desiccant wheel system in nearly zero energy building. Building Simulation. 2020, 13(6):1291-1303.
[9] Xing Su*, Xu Zhang. Temporal validation of life cycle greenhouse gas emissions of energy systems in China. Journal of Cleaner Production. 2016, 139(12): 250-257.
[10] Xing Su*, Xu Zhang. A detailed analysis of the embodied energy and carbon emissions of steel-construction residential buildings in China. Energy and Buildings. 2016, 119(5): 323-330.
[11] Xing Su*, Zhong Luo, Yuhang Li, Chenhao Huang. Life cycle inventory comparison of different building insulation materials and uncertainty analysis. Journal of Cleaner Production. 2016, 112: 275-281.
[12] Deyin Zhao, Ming Zhong, Xu Zhang*, Xing Su*. Energy consumption predicting model of VRV (Variable refrigerant volume) system in office buildings based on data mining. Energy. 2016, 102(5): 660-668.
[13] Su Xing, Zhang Xu, Gao Jun. Inventory Analysis of LCA on Steel- and Concrete-Construction Office Buildings. Energy and Buildings. 2008, 40(7): 1188-1193.
[14] Xing Su, Xu Zhang, Jun Gao. Evaluation method of natural ventilation system based on thermal comfort in China. Energy and Buildings. 2009.41(1): 67-70.
[15] Xing Su, Xu Zhang. Environmental performance optimization of window-wall ratio for different window type in hot summer and cold winter zone in China based on life cycle assessment. Energy and Buildings. 2010, 42(2): 198-202.
[16] Chengquan Zhang, Jun Gao, Yukun Xu, Yunfei Xia, Xiaobin Wei, Xing Su, Lingjie Zeng. Void fraction for random loose packing of the cylindrical particles considering filling rate, material and shape. 2021, (5)
[17] Chengquan Zhang, Jun Gao, Yukun Xu, Yunfei Xia, Xiaobin Wei, Xing Su, Lingjie Zeng. Random loose packing of cylindrical particles considering filling rate. Powder Technology. 2021, 386(7): 98-107.
[18] Shengyi Tang, Chengqiang Zhi, Yujie Fan, Wei Ye, Xing Su, Xu Zhang. Unhealthy indoor humidity levels associated with ventilation rate regulations for high-performance buildings in China. Building and Environment. 2020, 177; 106839.
[19] Bowen Du, Jun Gao, Lingjie Zeng, Xing Su, Xu Zhang, Shuili Yu, Hongting Ma. Area optimization of solar collectors for adsorption desalination. Solar Energy. 2017, 157(11): 298-308.
[20] Wei Ye, Xu Zhang, Jun Gao, Xiang Zhou, Xing Su. Indoor air pollutants, ventilation rate determinants and potential control strategies in Chinese dwellings: A literature review. Science of the Total Environment. 2017, 586(5): 696-729.
[21] Xiaolu Shao, Xing Su*, Shaochen Tian, Jian Cai. The effect of biogas fermentation assisted by simple solar greenhouse. Cold Climate HVAC and Energy 2021.
[22] Xiaolu Shao, Xing Su*, Shaochen Tian, Jian Cai. The climate adaptability evaluation of biogas fermentation assisted by solar greenhouse. Cold Climate HVAC and Energy 2021.
[23] Lei Wang, Xing Su*. Cooling load prediction of subway station based on data mining. Indoor Air 2020.
[24] Shengyi Tang, Wei Ye, Xing Su, Xu Zhang. Determining moist-based ventilation rates for residential buildings with low-infiltration in China: a preliminary discussion. Proceedings of the 11th International Symposium on Heating, Ventilation and Air Conditioning. 2020, 97-105.
[25] Shengyi Tang, Wei Ye, Xing Su, Xu Zhang. Simulations on non-healthy indoor humidity by ventilation rates in nearly zero energy residential buildings in China. 10th International Conference IAQVEC 2019, 2019.
[26] Shaochen Tian, Xing Su*, Xu Zhang. Application of heat pump combined two-stage desiccant wheel fresh air system of residential buildings in mixed climate zone. CLIMA 2019 Congress.
[27] Shaochen Tian, Xing Su*. Performance analysis of a hybrid solar energy, heat pump, and desiccant wheel air-conditioning system in low energy consumption building. Proceedings of the 11th International Symposium on Heating, Ventilation and Air Conditioning, 2020, 611-620.
[28] Xing Su, Xu Zhang. Decision on Window-wall Ratio and Window Materials of Typical Office Buildings in Shanghai Based on LCA. The First International Conference on Building Energy and Environment. 2008 Dalian 175-180.
[29] Xing Su*, Xu Zhang, Yuan Yuan. Environmental Performance of Power Generation System in China Based on LCA. Second International Symposium on Aqua Science, Water Resource, and Low Carbon Energy, AIP Conference Proceedings, Volume 1251.
[30] Xing Su*, Hang Li, Xu Zhang, Bo Song. Model and Experiment Study on Solar Heating Biogas Production in Rural China, Procedia Engineering, 2017, 205: 3525-3530.
[31] Hang Li, Bo Tang, Lunfei Che, Jun Liu, Xing Su*. Energy Saving Potential of Air Conditioning System of Equipment Stations in Metro Systems, Procedia Engineering, 2017, 205: 3519-3524.
[32] 苏醒*, 王磊,田少宸,秦旭. 基于动态客流量模型的地铁车站空调负荷预测,同济大学学报(自然科学版),2021
[33] 苏醒*, 田少宸. 夏热冬冷地区近零能耗住宅室内湿特性分析. 同济大学学报(自然科学版),2020, 48(5):725-732.
[34] 苏醒*, 李航, 张旭, 宋波. 太阳助秸秆沼气的生命周期能耗及碳排放分析. 同济大学学报(自然科学版)2017, 45(8): 1204-1208.
[35] 苏醒*, 罗仲, 张旭. 中国能源系统生命周期碳排放的时间有效性. 同济大学学报(自然科学版)2016, 44(5): 773-778.
[36] 苏醒*, 张旭, 孙永强. 钢结构住宅建筑部品生命周期详单分析. 同济大学学报(自然科学版). 2011, 39(12):1784-1788.
[37] 苏醒*, 张旭, 孙永强. 考虑回收能力的材料生命周期清单分析计算模型. 同济大学学报(自然科学版). 2011, 39(10): 1528-1530,1547.
[38] Xing Su*, Xiang Zhou, Xu Zhang. Validity of research boundary in energy system life cycle assessment. Proceeding of ISHVAC2011. 2011: 1474-1478.
[39] Fei Cheng, Xu Zhang, Xing Su. Comparative assessment of external and internal insulation for intermittent air-conditioned bedrooms in Shanghai. Procedia Engineering, 2017, 205: 50-55.
[40] 程飞, 张旭, 苏醒. 夏热冬冷地区住宅外墙内外保温性能分析. 同济大学学报(自然科学版). 2017, 45(6): 827-832.
[41] 程飞, 张旭, 苏醒.空调间歇运行模式下外墙内外保温的能耗特性对比. 同济大学学报(自然科学版). 2019, 47(2): 269-274.
[42] Mingling Zhai, Xu Zhang, Fei Cheng, Xiang Zhou, Xing Su. A game-theoretic analysis of the government's role on the biomass supply chain construction. International Journal of Ambient Energy, 2017, 38(5): 444-458.
[43] 翟明岭, 张旭, 程飞, 苏醒. 农户秸秆处置及供生物质电厂成本分析. 同济大学学报(自然科学版). 2016, 44(3): 440-445.
专利软著 :
专利
[1] 发明专利,可自动调整再生区域面积的除湿转轮装置,ZL201810868896.3,已授权;
[2] 发明专利,一种节能型变除湿量热泵式转轮除湿机组及其控制方法,CN202010025175.3,已公开;
[3] 发明专利,沼气与辅助供热系统耦合的供热方法及采暖系统, CN202011358634.6,已公开;
[4] 发明专利,一种无霜冷库用热泵转轮耦合装置及运行方法,已申请;
[5] 发明专利,一种适用于低温环境的无水加湿装置及控制方法,已申请;
[6] 发明专利,基于堆积特性的生物质成型燃料形态优化方法,已申请;
[7] 实用新型专利,一种基于太阳能温室的沼气发酵装置,ZL2017 20653706.7,已授权;
[8] 实用新型专利,智能调温型太阳能沼气发酵装置,ZL202020872709.1,已授权;
[9] 实用新型专利,可降温正压式医用防护服,ZL202020873508.3,已授权;
[10] 实用新型专利,一种节能型变除湿量热泵式转轮除湿机组,ZL202020048462.1,已授权;
[11] 实用新型专利,一种对喷头的喷液量进行调节的方法以及移动式喷液装置,CN104148201A,已授权;
软件著作权:
[1] 太阳能干式发酵集中制沼气候适应性评价软件,2017SR600910,已授权;
[2] 绿色生态村镇评分软件,2016SR362968,已授权;
[3] 太阳能辅助沼气采暖适应性评价软件V1.0,2020SR0996107,已授权;
[4] 西北村镇生物质-风/光互补型热电联产系统设计运行优化软件;
标准编制:
[1] 国家标准,《户式新风除湿机》,(GB/T 40397-2021),参编,排名第7
[2] 国家标准,《模块式空调机房设备》(GB/T 40411-2021),参编,排名第8
[3] 国家标准,《建筑产品与服务环境声明(EPD)通则》,参编,已审查
[4] 国家标准,《医院建筑运行维护技术标准》,参编,已审查
[5] 上海市工程建设规范《绿色生态城区评价标准》(DG/TJ08-2253-2018),参编
[6] 中国工程建设标准化协会标准,《绿色建材评价标准-钢结构房屋用钢构件》(T/CECS10028-2019),参编
[7] 中国工程建设标准化协会标准,《村镇建筑清洁能源供暖技术规程》(T/CECS 614-2019),参编
[8] 中国建筑节能协会团体标准,《绿色建筑节能环保技术适应性导则》(T/CABEE 004-2020),参编
[9] 中国建筑节能协会和中国城市轨道交通协会联合团体标准,《轨道交通车站高效空调系统技术标准》(T/CABEE 008-2020、T/CAMET 02003-2020),参编
[10] 中国工程建设标准化协会标准,《地铁节能调适与运行维护技术规程》,参编
[11] 中国工程建设标准化协会标准,《绿色港口客运站建筑评价标准》(T/CECS 829-2021),参编
[12] 中国工程建设标准化协会标准,《智慧校园评价标准》,参编
[13] 中国工程建设标准化协会标准,《中小学室内环境评价标准》,参编
[14] 中国工程建设标准化协会标准,《公共机构水平衡测试技术导则》,参编
[15] 中国工程建设标准化协会标准,《建筑防疫通道技术规程》,参编
[16] 上海市绿色建筑协会团体标准,《绿色城市新区规划评价体系》,参编,已审查
[17] 行业标准,《校园综合能源服务项目认证技术规范》,参编
[18] 行业标准,《校园综合能源服务认证技术规范》,参编 |