地震地质 ›› 2004, Vol. 26 ›› Issue (3): 519-527.

• 热红外异常实验与观测 • 上一篇    下一篇

从红外遥感图像提取地下热信息的透热指数法

刘培洵, 刘力强, 陈顺云, 陈国强, 马瑾   

  1. 中国地震局地质研究所, 地震动力学国家重点实验室, 北京, 100029
  • 收稿日期:2004-06-09 修回日期:2004-07-11 出版日期:2004-09-02 发布日期:2009-10-26
  • 作者简介:刘培洵,男,1963年生,1986年毕业于北京大学地震地质专业,副研究员,现主要从事构造物理研究,电话:010-62009004,E-mail:liupeixun@sina.com.
  • 基金资助:
    国家自然科学基金重大研究计划(90202018)和中国地震局专项经费资助。中国地震局地质研究所论著2004B0040。

HEAT PENETRABILITY INDEX (HPI) METHOD FOR DISTILLING SUBSURFACE THERMAL INFORMATION FROM SATELLITE INFRARED IMAGES

LIU Pei-xun, LIU Li-qiang, CHEN Shun-yun, CHEN Guo-qiang, MA Jin   

  1. State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing 100029, China
  • Received:2004-06-09 Revised:2004-07-11 Online:2004-09-02 Published:2009-10-26

摘要: 红外遥感影像主要反映的是地表温度。然而气象因素对地表温度的影响远大于来源于地下的地质因素,可能存在的地下热异常信号淹没在气象信息之中。如何从中提取地下热信息,成为一个关键问题。文中由热传导理论出发,根据地下热信号通过不同热扩散率材料传到地表时将产生较大时间差的特点,提出了提取地下热异常的新指标“透热指数”。通过对实验数据和遥感数据的试算,分析了使用“透热指数”法的条件及影响因素。

关键词: 红外遥感, 地表温度, 断层活动, 透热指数

Abstract: After a series of complicated modifications the surface temperature of the Earth can be measured. Usually this surface temperature is referred to as land surface temperature. The heat effect that engenders this temperature variation may come from the climate and subsurface heat sources. Among them,the subsurface heat sources are of particular importance to earthquake and active fault studies. Unfortunately,the heat effect of climate is much larger than that of the subsurface heat sources so that it may conceal the information of subsurface thermal activity. Heat Penetrability Index (HPI) method is proposed in this paper for measuring subsurface thermal activity. The first assumption for HPI method is that the sun is heating the land surface synchronously. The second is the horizontal variation of heat exchange rates of rocks on top of subsurface heat sources. Provided that the rocks are heated,then the variation of surface temperature can be observed. According to the afore mentioned concepts and thermodynamics,the HPI can be deduced through correlation analysis as expressed by: where u and v represent surface temperature in two different areas,n is the sample number in the scanning window and D is the Heat Penetrability Index. When subsurface heating event takes place,D will go up,and vice versa. Some examples from experiment and satellite infrared image analysis are presented to test the effectiveness of HPI method.

Key words: infrared remote sensing, land surface temperature, fault activity, heat penetrability index

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