蒋海昆, 马胜利, 张流等. 雁列式断层组合变形过程中的声发射活动特征. 地震学报, 2002, 24(4): 385-396. Jiang H K, Ma S L, Zhang L, et al. Spatial-temporal characteristics of acoustic emission during the deformation of rock samples with compressional and extensional en-echelon fault pattern. Acta Seismologica Sinica (in Chinese), 2002, 24(4): 385-396.
[2]
吴立新, 刘善军, 吴育华等. 遥感-岩石力学 (I)——非连续组合断层破裂的热红外辐射规律及其构造地震前兆意义. 岩石力学与工程学报, 2004, 23(1): 24-30. Wu L X, Liu S J, Wu Y H, et al. Remote sensing-rock mechanics(I) ——laws of thermal infrared radiation from fracturing of discontinuous jointed faults and its meanings for tectonic earthquake omens. Chinese Journal of Rock Mechanics and Engineering (in Chinese), 2004, 23(1): 24-30.
[3]
强祖基, 徐秀登, 赁常恭. 卫星热红外异常: 临震前兆. 科学通报, 1990, 35(17): 1324-1327. Qiang Z J, Xu X D, Lin C G. Satellite infrared thermal anomaly: Earthquake imminent precursor. Chinese Science Bulletin (in Chinese), 1990, 35(17): 1324-1327.
[4]
江灏, 王钟睿, 柳艳香等. 我国地震、地温、降水之间的动态统计特征. 地球物理学报, 2002, 45(增刊): 144-150. Jiang H, Wang Z R, Liu Y X, et al. The dynamic statistical characteristics between the earthquake, ground temperature and precipitation in China. Chinese J. Geophys. (in Chinese), 2002, 45(Suppl.): 144-150.
[5]
Tronin A A, Biagi P F, Molchanov O A, et al. Temperature variations related to earthquakes from simultaneous observation at the ground stations and by satellites in Kamchatka area. Physics and Chemistry of the Earth, Parts A/B/C, 2004, 29(4-9): 501-506.
[6]
Pulinets S A, Ouzounov D, Karelin A V, et al. The physical nature of thermal anomalies observed before strong earthquakes. Physics and Chemistry of the Earth, Parts A/B/C, 2006, 31(4-9): 143-153.
[7]
陈顺云, 刘培洵, 刘力强等. 地表热红外辐射的小波分析及其在现今构造活动研究中的意义. 地球物理学报, 2006, 49(3): 824-830. Chen S Y, Liu P X, Liu L Q, et al. Wavelet analysis of thermal infrared radiation of land surface and its implication in the study of current tectonic activities. Chinese J. Geophys. (in Chinese), 2006, 49(3): 824-830.
[8]
陈顺云, 马瑾, 刘培洵等. 中国大陆地表温度年变基准场研究. 地球物理学报, 2009, 52(9): 2273-2281. Chen S Y, Ma J, Liu P X, et al. A study on the normal annual variation field of land surface temperature in China. Chinese J. Geophys. (in Chinese), 2009, 52(9): 2273-2281.
[9]
卢善龙, 沈晓华, 邹乐君等. 基于尺度分析的断层热信息遥感图像增强方法——以江山—绍兴断裂金衢段为例. 地球物理学报, 2008, 51(5): 1484-1493. Lu S L, Shen X H, Zou L J, et al. Remote sensing image enhancement method of the fault thermal information based on scale analysis: A case study of Jiangshan—Shaoxing fault between Jinhua and Quzhou of Zhejiang Province, China. Chinese J. Geophys. (in Chinese), 2008, 51(5): 1484-1493.
[10]
马瑾, 陈顺云, 扈小燕等. 大陆地表温度场的时空变化与现今构造活动. 地学前缘, 2010, 17(4): 1-14. Ma J, Chen X Y, Hu X Y, et al. Spatial-temporal variation of the land surface temperature field and present-day tectonic activity. Earth Science Frontiers (in Chinese), 2010, 17(4): 1-14.
[11]
陈顺云, 刘培洵, 刘力强等. 遥感与实测地表温度的对比分析及在地震研究中的意义. 地球物理学报, 2011, 54(3): 747-755. Chen S Y, Liu P X, Liu L Q, et al. Comparative analysis between land surface temperatures obtained by field measurement and satellite remote sensing and its implication in earthquake research. Chinese J. Geophys. (in Chinese), 2011, 54(3): 747-755.
[12]
Qiang Z J, Kong L C, Zheng L Z, et al. An experimental study on temperature increasing mechanism of satellitic thermo-infrared. Acta Seismologica Sinica, 1997, 10(2): 247-252.
[13]
马胜利, 邓志辉, 马文涛等. 雁列式断层变形过程中物理场演化的实验研究(一). 地震地质, 1995, 17(4): 327-335. Ma S L, Deng Z H, Ma W T, et al. Experimental study on evolution of physical field during deformation of en-echelon faults (一). Seismology and Geology (in Chinese), 1995, 17(4): 327-335.
[14]
邓明德, 崔承禹, 耿乃光. 遥感用于地震预报的理论及实验结果. 中国地震, 1993, 9(2): 163-169. Deng M D, Cui C Y, Geng N G. Application of principle of remote sensing to earthquake prediction and the experimental results. Earthquake Research in China (in Chinese), 1993, 9(2): 163-169.
[15]
崔承禹, 邓明德, 耿乃光. 在不同压力下岩石光谱辐射特性研究. 科学通报, 1993, 38(6): 538-541. Cui C Y, Deng M D, Geng N G. Study on the features of spectrum radiation of rocks under different loading. Chinese Science Bulletin (in Chinese), 1993, 38(6): 538-541.
[16]
耿乃光, 于萍, 邓明德等. 热红外震兆成因的模拟实验研究. 地震, 1998, 18(1): 83-88. Geng N G, Yu P, Deng M D, et al. The simulated experimental studies on cause of thermal infrared precursor of earthquakes. Earthquake (in Chinese), 1998, 18(1): 83-88.
[17]
Wu L X, Wang J Z. Infrared radiation features of coal and rocks under loading. Int. J. Rock Mech. Min. Sci., 1998, 35(7): 969-976.
[18]
尹京苑, 房宗绯, 钱家栋等. 红外遥感用于地震预测及其物理机理研究. 中国地震, 2000, 16(2): 140-148. Yin J Y, Fang Z F, Qian J D, et al. Research on the application of infrared remote sensing in earthquake prediction and its physical mechanism. Earthquake Research in China (in Chinese), 2000, 16(2): 140-148.
[19]
刘善军, 吴立新, 王川婴等. 遥感-岩石力学(VIII)——论岩石破裂的热红外前兆. 岩石力学与工程学报, 2004, 23(10): 1621-1627. Liu S J, Wu L X, Wang C Y, et al. Remote sensing-rock mechanics (VIII) ——TIR omens of rock fracturing. Chinese Journal of Rock Mechanics and Engineering (in Chinese), 2004, 23(10): 1621-1627.
[20]
张艳博, 刘善军. 含孔岩石加载过程的热辐射温度场变化特征. 岩土力学, 2011, 32(4): 1013-1024. Zhang Y B, Liu S J. Thermal radiation temperature field variation of hole rock in loading process. Rock and Soil Mechanics (in Chinese), 2011, 32(4): 1013-1024.
[21]
刘力强, 陈国强, 刘培洵等. 岩石变形实验热红外观测系统. 地震地质, 2004, 26(3): 492-501. Liu L Q, Chen G Q, Liu P X, et al. Infrared measurement system for rock deformation experiment. Seismology and Geology (in Chinese), 2004, 26(3): 492-501.
[22]
陈顺云, 刘力强, 刘培洵等. 应力应变与温度响应关系的理论与实验研究. 中国科学: D 辑, 2009, 52(10): 1446-1455. Chen S Y, Liu L Q, Liu P X, et al. Theoretical and experimental study on relationship between stress-strain and temperature variation. Science in China: Series D, 2009, 52(11): 1825-1834.
[23]
马瑾, 刘力强, 刘培洵等. 断层失稳错动热场前兆模式: 雁列断层的实验研究. 地球物理学报, 2007, 50(4): 1141-1149. Ma J, Liu L Q, Liu P X, et al. Thermal precursory pattern of fault unstable sliding: An experimental study of en echelon faults. Chinese J. Geophys. (in Chinese), 2007, 50(4): 1141-1149.
[24]
刘培洵, 马瑾, 刘力强等. 压性雁列构造变形过程中热场演化的实验研究. 自然科学进展, 2007, 17(4): 454-459. Liu P X, Ma J, Liu L Q, et al. An experimental study on variation of thermal fields during the deformation of a compressive en-echelon fault set. Progress in Natural Science, 2007, 17(3): 288-304.
[25]
Ma J, Ma S P, Liu L Q, et al. Experimental study of thermal and strain fields during de-formation of en enchelon faults and its geological implications. Geodynamics & Tectonophysics, 2010, 1(1): 24-35.
[26]
马瑾, Sherman S I, 郭彦双. 地震前亚失稳应力状态的识别——以5°拐折断层变形温度场演化的实验为例. 中国科学: 地球科学, 2012, 42(5): 633-645. Ma J, Sherman S I, Guo Y S. Identification of meta-instable stress state based on experimental study of evolution of the temperature field during stick-slip instability on a 5°bending fault. Science in China: Series D (in Chinese), 2012, 55(6): 869-881.
[27]
刘力强, 马瑾, 吴秀泉. 雁列式断层变形与失稳过程的实验研究. 地震学报, 1986, 8(4): 393-403. Liu L Q, Ma J, Wu X Q. An experimental study on the process of deformation and instability for en-echelon faults. Acta Seismologica Sinica (in Chinese), 1986, 8(4): 393-403.
[28]
Tramutoli V, Cuomob V, Filizzola C, et al. Assessing the potential of thermal infrared satellite surveys for monitoring seismically active areas: The case of Kocaeli (I·zmit) earthquake, August 17, 1999. Remote Sensing of Environment, 2005, 96(3-4): 409-426.
[29]
Saraf A K, Rawat V, Banerjee P, et al. Satellite detection of earthquake thermal infrared precursors in Iran. Nat. Hazards, 2008, 47(1): 119-135.
[30]
魏乐军, 郭坚峰, 蔡慧等. 卫星热红外异常——四川汶川Ms8.0级大地震的短临震兆. 地球学报, 2008, 29(5): 583-591. Wei L J, Guo J F, Cai H, et al. Satellite thermal infrared anomaly: a short-term and impending earthquake precursor before the Wenchuan Ms8.0 earthquake in Sichuan, China. Acta Geoscientia Sinica (in Chinese), 2008, 29(5): 583-591.
[31]
赵刚, 王军, 何案华等. 地热对汶川8.0级地震的同震响应及震后调整. 大地测量与地球动力学, 2009, 29(2): 29-32, 42. Zhao G, Wang J, He A H, et al. Co-seismic response and postseismic effect of geotherm on Wenchuan MS8.0 earthquake. Journal of Geodesy and Geodynamics (in Chinese), 2009, 29(2): 29-32, 42.
[32]
Ouzounov D, Liu D F, Kang C L, et al. Outgoing long wave radiation variability from IR satellite data prior to major earthquakes. Tectonophysics, 2007, 431(1-4): 211-220.
[33]
张元生, 郭晓, 钟美娇等. 汶川地震卫星热红外亮温变化. 科学通报, 2010, 55(10): 904-910. Zhang Y S, Guo X, Zhong M J, et al. Wenchuan earthquake: Brightness temperature changes from satellite infrared information. Chinese Science Bulletin, 2010, 55(18): 1917-1924.
[34]
张元生, 郭 晓, 魏从信等. 日本9级和缅甸7.2级地震热辐射表现特征. 地球物理学报, 2011, 54(10): 2575-2580. Zhang Y S, Guo X, Wei C X, et al. The characteristics of seismic thermal radiation of Japan MS9.0 and Myanmar MS7.2 earthquake. Chinese J. Geophys. (in Chinese), 2011, 54(10): 2575-2580.
[35]
陈顺云, 马瑾, 刘培洵等. 利用卫星遥感获取现今构造活动信息的热物理指标研究. 中国科学: 地球科学, 2012, 42(2): 211-216. Chen S Y, Ma J, Liu P X, et al. A thermal physical index to explore current tectonic activity with satellite remote sensing. Science in China: Earth Science (in Chinese), 2012, 55(2): 290-295.
[36]
Pulinets S, Ouzounov D. Lithosphere-Atmosphere-Ionosphere Coupling (LAIC) model-An unified concept for earthquake precursors validation. Journal of Asian Earth Sciences, 2011, 41(4-5): 371-382.
[37]
刘培洵, 刘力强, 陈顺云等. 地表岩石变形引起热红外辐射的实验研究. 地震地质, 2004, 26(3): 502-511. Liu P X, Liu L Q, Chen S Y, et al. An experiment on the infrared radiation of surficial rocks during deformation. Seismology and Geology (in Chinese), 2004, 26(3): 502-511.
[38]
Luong M P. Infrared thermovision of damage processes in concrete and rock. Engineering Fracture Mechanics, 1990, 35(1-3): 291-301.