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Active volcano monitoring using a space-based short-wave infrared imager

机译:使用天基短波红外成像仪进行主动火山监测

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We examine the utility of optical hyperspectral data in the shortwave infrared bands for measuring the temperature field of Kilauea volcano, Hawaii. Hot objects have dramatically elevated SWIR radiance that measures one side of the Planck blackbody radiation function. Accounting for cool and hot contributions to the total radiance allows an inference of the temperature of the hot component. Maximum temperature for the hot component is determined to be in excess of 1200 K, although for most pixels, the hot temperature fell in the 1000–1100 K range. Thermally anomalous pixels cluster in a long-lived lava lake in the SE corner of Halema''uma''u crater. We calculate a total radiant flux of ∼100 MW for the lava lake. While thermally anomalous pixels cover a roughly circular area approximately 180 m in diameter, the main energy release is from an area ∼50 m in diameter.
机译:我们在短波红外带中检测光学超光谱数据的效用,以测量Kilauea火山,夏威夷的温度场。热对象大大提升了旋转辐射的旋转辐射,测量普朗克黑体辐射功能的一侧。核算对于总辐射的冷却和热贡献允许推动热部件的温度。热部件的最大温度被确定为超过1200 k,但对于大多数像素,热温下降在1000-1100 k范围内。在Halema''ua'u火山口的SE角落的长寿熔岩湖中的热异常像素簇。我们计算熔岩湖的〜100兆瓦的总辐射通量。虽然热异常像素覆盖直径大约180米的大致圆面积,但主能释放是直径的区域〜50m。

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