[1] 王德才, 倪四道, 李俊. 地震烈度快速评估研究现状与分析[J]. 地球物理学进展, 2013, 28(4): 1772-1784. WANG De-cai, NI Si-dao, LI Jun. Research status of rapid assessment on seismic intensity[J]. Progress in Geophysics, 2013, 28(4): 1772-1784 (in Chinese). [2] 陈顒, 刘杰, 陈棋福, 等. 地震危险性分析和震灾预测[M]. 北京: 地震出版社, 1999. CHEN Yong, LIU Jie, CHEN Qi-fu, et al. Earthquake hazard analysis and earthquake damage prediction[M]. Beijing: Seismological Press, 1999 (in Chinese). [3] 尹之潜. 地震灾害损失预测研究[J]. 地震工程与工程振动, 1991, 11(4): 87-96. YIN Zhi-qian. A study for predicting earthquake disaster loss[J]. Earthquake Engineering and Engineering Vibration, 1991, 11(4): 87-96 (in Chinese). [4] 李媛媛, 苏国峰, 翁文国, 等. 地震人员伤亡评估方法研究[J]. 灾害学, 2014, 29(2): 223-227. LI Yuan-yuan, SU Guo-feng, WENG Wen-guo, et al. A review of researches on seismic casualty estimation[J]. Journal of Catastrophology, 2014, 29(2): 223-227 (in Chinese). [5] 程家喻. 地震发生时间对人员伤亡影响的概率[J]. 灾害学, 1993, 8(2): 13-16. CHENG Jia-yu. Probability of the original time of earthquake affecting the casualty[J]. Journal of Catastrophologu, 1993, 8(2): 13-16 (in Chinese). [6] 聂高众, 安基文, 邓砚. 地震应急灾情服务进展[J]. 地震地质, 2012, 34(4): 782-791. NIE Gao-zhong, AN Ji-wen, DENG Yan. Advances in earthquake emergency disaster service[J]. Seismology and Geology, 2012, 34(4): 782-791 (in Chinese). [7] 马玉宏, 谢礼立. 地震人员伤亡估算方法研究[J]. 地震工程与工程振动, 2000, 20(4): 140-147. MA Yu-hong, XIE Li-li. Methodologies for assessment of earthquake casualty[J]. Earthquake Engineering and Engineering Vibration, 2000, 20(4): 140-147 (in Chinese). [8] Li Y C, Wu Z L, Zhao Y Z. Estimating the number of casualties in earthquake from early field reports and improving the estimate with time[J]. Natural Hazards, 2011, 56(3): 699-708. [9] 肖本夫, 吴今生, 毛利, 等. 基于深度学习网络的地震地质灾害识别研究以四川九寨沟7.0级地震为例[J]. 震灾防御技术, 2021, 16(4): 617-624. XIAO Ben-fu, WU Jin-sheng, MAO Li, et al. Deep learning approach for seismic geohazard detection: A case study in Jiuzhaigou M7.0 earthquake, Sichuan, 2017[J]. Technology for Earthquake Disaster Prevention, 2021, 16(4): 617-624 (in Chinese). [10] 万柯松, 倪四道, 曾祥方, 等. 汶川大地震中的应急地震学[J]. 中国科学D辑: 地球科学, 2009, 39(1): 1-10. WAN Ke-song, NI Si-dao, ZENG Xiang-fang, et al. Emergency seismology in Wenchuan earthquake[J]. Science in China Series D: Earth Sciences, 2009, 39(1): 1-10 (in Chinese). [11] 石伟华. 基于手机平台的位置服务的应用研究[D]. 上海: 上海师范大学, 2006. SHI Wei-hua. Research on the applicationg of location service based on mobile platform[D]. Shanghai: Shanghai Normal University, 2006 (in Chinese). [12] Kühn P J. Location-based services in mobile communication infrastructures[J]. AEU-International Journal of Electronics and Communications, 2004, 58(3): 159-164. [13] 国家统计局. 中华人民共和国2021年国民经济和社会发展统计公报[J]. 新华文摘, 2022. National Bureau of Statistics. Statistical Bulletin on National Economic and Social Development of the People's Republic of China in 2021[J]. Abstracts of New China, 2022 (in Chinese). [14] 张子民, 周英, 李琦, 等. 城市局域动态人口估算方法与模拟应用[J]. 地球信息科学学报, 2010, 12(4): 503-509. ZHANG Zi-min, ZHOU Ying, LI Qi, et al. An estimation method of dynamic population within an urban local area[J]. Journal of Geo-Information Science, 2010, 12(4): 503-509 (in Chinese). [15] 陈佳, 胡波, 左小清, 等. 利用手机定位数据的用户特征挖掘[J]. 武汉大学学报(信息科学版), 2014, 39(6): 734-738+744. CHEN Jia, HU Bo, ZUO Xiao-qing, et al. Personal profile mining based on mobile phone location data[J]. Geomatics and Information Science of Wuhan University, 2014, 39(6): 734-738+744 (in Chinese). [16] Tsai Y B, Chao H L, Lee C P. Spatial distribution and age dependence of human-fatality rate from the Chi-Chi, Taiwan, earthquake of 21 September 1999[J]. Bulletin of the Seismological Society of America, 2001, 91(5): 1298-1309. [17] 匡文慧, 杜国明. 北京城市人口空间分布特征的GIS分析[J]. 地球信息科学学报, 2011, 13(4): 506-512. KUANG Wen-hui, DU Guo-ming. Analyzing urban population spatial distribution in Beijing proper[J]. Journal of Geo-Information Science, 2011, 13(4): 506-512 (in Chinese). [18] 吴志强, 叶锺楠. 基于百度地图热力图的城市空间结构研究以上海中心城区为例[J]. 城市规划, 2016, 40(4): 33-40. WU Zhi-qiang, YE Zhong-nan. Research on urban spatial structure based on Baidu heat map: A case study on the central city of Shanghai[J]. City Planning Review, 2016, 40(4): 33-40 (in Chinese). [19] 于丙辰, 陈刚. 基于腾讯区域热力图的庐山核心景区客流研究[J]. 国土与自然资源研究, 2017(2): 83-89. YU Bing-chen, CHEN Gang. Research on visitor flows of Lushan core scenic area using Tencent regional heatmap[J]. Territory & Natural Resources Study, 2017(2): 83-89 (in Chinese). [20] 李东平, 黄乐, 陈海鹏, 等. 基于手机位置数据的四川九寨沟7.0级地震人流分析[J]. 中国地震, 2017, 33(4): 602-612. LI Dong-ping, HUANG Le, CHEN Hai-peng, et al. Change of population distribution during the Jiuzhaigou MS7.0 earthquake emergency period based on mobile phone location data[J]. Earthquake Research in China, 2017, 33(4): 602-612 (in Chinese). [21] 彭频, 周夏. 四川泸定6.8级地震抗震救灾行动与启示[J]. 中国应急救援, 2023(1): 18-23. PENG Pin, ZHOU Xia. Earthquake rescue and reflection on M6.8 earthquake in Luding, Sichuan[J]. China Emergency Rescue, 2023(1): 18-23 (in Chinese). [22] 尹章才, 康自强. 时间地理支持下的核密度估计研究进展[J]. 地理科学进展, 2022, 41(1): 64-72. YIN Zhang-cai, KANG Zi-qiang. Advances in kernel density estimation supported by time geography[J]. Progress in Geography, 2022, 41(1): 64-72 (in Chinese). [23] Kafi K M, Barau A S, Aliyu A. The effects of windstorm in African medium-sized cities: An analysis of the degree of damage using KDE hotspots and EF-scale matrix[J]. International Journal of Disaster Risk Reduction, 2021, 55: 102070 (in Chinese). [24] 禹文豪, 艾廷华, 杨敏, 等. 利用核密度与空间自相关进行城市设施兴趣点分布热点探测[J]. 武汉大学学报(信息科学版), 2016, 41(2): 221-227. YU Wen-hao, AI Ting-hua, YANG Min, et al. Detecting “Hot Spots” of facility POIs based on kernel density estimation and spatial autocorrelation technique[J]. Geomatics and Information Science of Wuhan University, 2016, 41(2): 221-227 (in Chinese). [25] Downs J, Horner M, Lamb D, et al. Testing time-geographic density estimation for home range analysis using an agent-based model of animal movement[J]. International Journal of Geographical Information Science, 2018, 32(7-8): 1505-1522. [26] Okabe A, Satoh T, Sugihara K. A kernel density estimation method for networks, its computational method and a GIS-based tool[J]. International Journal of Geographical Information Science, 2009, 23(1-2): 7-32. [27] Yin Z C, Li S J, Ying S, et al. Method for calculating the encounter probability in network space[J]. Transactions in GIS: TG, 2020, 24(2): 402-422. [28] 吴士锋, 李肖红, 吴晓曼, 等. 基于位置的社交网络服务信息流的导引作用及空间影响研究[J]. 世界地理研究, 2016, 25(1): 159-165. WU Shi-feng, LI Xiao-hong, WU Xiao-man, et al. Guiding role and spatial impact of location-based social networking services information flow[J]. World Regional Studies, 2016, 25(1): 159-165 (in Chinese). [29] 朱战宏. 移动位置服务中基础定位平台技术的研究与实现[D]. 西安: 西北工业大学, 2007. ZHU Zhan-hong. Research and Implementation of the basic location center technology in location based services[D]. Xi'an: Northwestern Polytechnical University, 2007 (in Chinese). [30] 庞晓克, 聂高众, 张昕, 等. 基于手机位置数据的地震灾情指标选择[J]. 中国地震, 2019, 35(1): 144-157. PANG Xiao-ke, NIE Gao-zhong, ZHANG Xin, et al. Selection of earthquake disaster index based on mobile phone position data[J]. Earthquake Research in China, 2019, 35(1): 144-157 (in Chinese). [31] 李良, 李路云. 地震发生时个体应急行为规律的探索性研究[J]. 管理工程学报, 2022, 36(2): 148-158. LI Liang, LI Lu-yun. Exploratory research on the patterns of individual emergency behaviors during earthquakes[J]. Journal of Industrial Engineering and Engineering Management, 2022, 36(2): 148-158 (in Chinese). [32] 李帆. 通信系统抗震韧性评估方法研究[D]. 哈尔滨: 中国地震局工程力学研究所, 2022. LI Fan. Assessment method of seismic resilience of communication system[D]. Harbin: Institute of Engineering Mechanics, CEA, 2022 (in Chinese). [33] 李亦纲, 高博伟, 代博洋, 等. 泸定6.8级地震引发地质灾害的特点及防范应对措施分析[J]. 中国应急救援, 2023(1): 14-17. LI Yi-gang, GAO Bo-wei, DAI Bo-yang, et al. Characteristics, prevention and control of geological disasters caused by Luding M6.8 earthquake[J]. China Emergency Rescue, 2023(1): 14-17 (in Chinese). |