[1] Li X, Cai H, Zhao L. Antiterrorist emergency ventilation: system, strategy and decision-making[M]. New York, USA: Nova Science Publishers, Inc., 2009 (ISBN: 978-1-60741-041-6) 受美国NOVA出版社邀请,撰写英文反恐专著一部。系统地论述了生化恐怖袭击背景下,室内污染物扩散过程的快速计算方法,人员暴露剂量评价,应急策略优化和应急通风系统设计等问题。 [2] Kowalski W J. 免疫建筑综合技术[M]. 蔡浩,王晋生,等译.龙惟定校.北京:中国建筑工业出版社,2006 (ISBN: 711207878)(译著,为全书负责人和第一完成人,篇幅65万字)。 [3] 美国联邦紧急事务管理局(FEMA).建筑物防御潜在恐怖袭击参考手册 [M]. 蔡浩,沈蔚,缪小平,等译.方向,李先庭校.北京:国防工业出版社,2011(ISBN: 978-7-118-07415-4)(译著,为全书负责人和第一完成人,篇幅31.2万字) [4] 王明洋,宋春明,蔡浩.地下空间防爆与防恐[M].上海:同济大学出版社,2014 (ISBN: 978-7-5608-5662-9)(编著,国家出版基金项目,国家“十二五”重点图书出版规划项目,上海市高校服务国家重大战略出版工程入选项目;篇幅26.2万字) [5] Awbi Hazim B..建筑通风[M].李先庭,赵彬,邵晓亮,蔡浩,等.北京:机械工业出版社,2011(ISBN: 978-7-111-33236-7) (译著,篇幅58.6万字) [6] Cai H, Long W, Li X*, Kong L, Xiong S. Decision analysis of emergency ventilation and evacuation strategies against suddenly released contaminant indoors by considering the uncertainty of source locations[J]. Journal of Hazardous Materials. 2010, 178(1–3): 101–114, https://doi.org/10.1016/j.jhazmat.2010.01.049 (中科院SCI一区, 2020影响因子: 10.588, SCI, EI) [7] Feng Q, Cai H*, Li F*, Liu X, Liu S, Xu J. An improved particle swarm optimization method for locating time-varying indoor particle sources[J]. Building and Environment. 2019, 147: 146–157, https://doi.org/10.1016/j.buildenv.2018.10.008 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) (ESI 高被引论文) [8] Yang Y, Zhang B, Feng Q, Cai H*, Jiang M, Zhou K, Li F, Liu S, Li X. Towards locating time-varying indoor particle sources: Development of two multi-robot olfaction methods based on whale optimization algorithm [J]. Building and Environment. 2019, 166: 106413, https://doi.org/10.1016/j.buildenv.2019.106413 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) [9] Feng Q, Zhang C, Lu J, Cai H*, Chen Z, Yang Y, Li F, Li X. Source localization in dynamic indoor environments with natural ventilation: An experimental study of a particle swarm optimization-based multi-robot olfaction method[J]. Building and Environment. 2019, 161: 106228, https://doi.org/10.1016/j.buildenv.2019.106228 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) [10] Liu X, Li F*, Cai H*, Zhang K, Liu J, Xu J, Li X. Dynamical source term estimation in a multi-compartment building under time-varying airflow[J]. Building and Environment. 2019, 160: 106162, https://doi.org/10.1016/j.buildenv.2019.106162 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) [11] Yang Y, Feng Q, Cai H*, Xu J*, Li F, Deng Z, Yan C, Li X. Experimental study on three single-robot active olfaction algorithms for locating contaminant sources in indoor environments with no strong airflow[J]. Building and Environment. 2019, 155: 320–333, https://doi.org/10.1016/j.buildenv.2019.03.043 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) [12] Feng Q, Cai H*, Chen Z, Yang Y, Lu J, Li F, Xu J, Li X. Experimental study on a comprehensive particle swarm optimization method for locating contaminant sources in dynamic indoor environments with mechanical ventilation[J]. Energy and Buildings. 2019, 196: 145–156, https://doi.org/10.1016/j.enbuild.2019.03.032 (中科院SCI一区,2020影响因子: 5.879, SCI, EI) [13] Chen Y, Cai H*, Chen Z*, Feng Q. Using multi-robot active olfaction method to locate time-varying contaminant source in indoor environment[J]. Building and Environment. 2017, 118: 101–112, https://doi.org/10.1016/j.buildenv.2017.03.030 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) [14] Cai H, Li X*, Chen Z, Wang M. Rapid identification of multiple constantly-released contaminant sources in indoor environments with unknown release time[J]. Building and Environment. 2014, 81(0): 7–19, https://doi.org/10.1016/j.buildenv.2014.06.006 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) [15] Cai H, Long W, Li X*, Barker D. Evaluating emergency ventilation strategies under different contaminant source locations and evacuation modes by efficiency factor of contaminant source (EFCS)[J]. Building and Environment. 2010, 45(2): 485–497, https://doi.org/10.1016/j.buildenv.2009.07.005 (中科院SCI一区, 2020影响因子: 6.456, SCI, EI) |