热异常监测与活火山快速响应系统的集成

K. Zakšek, M. Hort
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引用次数: 2

摘要

成功预测火山爆发的机会在很大程度上取决于仔细的监测策略。一个移动火山快速反应系统(Exupery)目前正在由德国的一个更大的科学家小组开发中。除了通常监测的参数外,该系统还试图将基于卫星的观测直接纳入移动系统的监测策略。在遥感反演中,热异常温度和面积往往存在较大误差。因此,开发了一种将热异常特征输入GIS数据库的新策略。选择由温度和热异常面积计算的辐射通量作为热活动的最佳估计。为了放松通道间的共配准,减少点扩展函数的影响,整个热异常现在不再是单个像素,而是作为一个簇来表征。为了降低测量噪声,提高数据的时间分辨率,将AVHRR和MODIS数据同时使用。到目前为止,该方法已经在埃特纳火山的案例研究中得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of thermal anomaly monitoring into a mobile volcano fast response system
Chances of successfully forecasting volcanic eruptions are critically dependent on a careful monitoring strategy. A mobile volcano fast responses system (Exupery) is currently under development by a larger group of scientist in Germany. In addition to commonly monitored parameters this system attempts to directly include satellite based observations into the monitoring strategy of the mobile system. Among the remote sensing retrievals are thermal anomaly temperature and area that often contain a large error. Thus a new strategy of supplying thermal anomaly characteristics into the GIS database is being developed. Radiant flux computed from temperature and area of the thermal anomaly was chosen as the best estimator of the thermal activity. Trying to relax inter-channel co-registration and reducing the effect of the point spread function, the whole thermal anomaly is now not characterized single pixel-wise but as a cluster. In order to reduce the noise in the measurements and to improve the temporal resolution of the data, AVHRR and MODIS data are used simultaneously. The procedure has been so far tested in the case study of Etna volcano.
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