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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Measuring Water Vapor and Ash in Volcanic Eruptions With a Millimeter-Wave Radar/Imager
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Measuring Water Vapor and Ash in Volcanic Eruptions With a Millimeter-Wave Radar/Imager

机译:使用毫米波雷达/成像仪测量火山喷发中的水蒸气和灰分

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摘要

Millimeter-wave remote sensing technology can significantly improve measurements of volcanic eruptions, yielding new insights into eruption processes and improving forecasts of drifting volcanic ash for aviation safety. Radiometers can measure water vapor density and temperature inside eruption clouds, improving on existing measurements with infrared cameras that are limited to measuring the outer cloud surface. Millimeter-wave radar can measure the 3-D mass distribution of volcanic ash inside eruption plumes and their nearby drifting ash clouds. Millimeter wavelengths are better matched to typical ash particle sizes, offering better sensitivity than longer wavelength existing weather radar measurements, as well as the unique ability to directly measure ash particle size in situ. Here we present sensitivity calculations in the context of developing the water and ash millimeter-wave spectrometer (WAMS) instrument. WAMS, a radar/radiometer system designed to use off-the-shelf components, would be able to measure water vapor and ash throughout an entire eruption cloud, a unique capability.
机译:毫米波遥感技术可以显着改善火山喷发的测量,为喷发过程提供新的见解,并改善对航空灰分的火山灰的预测,以确保航空安全。辐射计可以测量喷发云内部的水蒸气密度和温度,从而改进了红外摄像头的现有测量范围,而红外摄像头仅限于测量云外表面。毫米波雷达可以测量火山喷发羽流及其附近飘浮的灰云中火山灰的3D质量分布。毫米波波长可以更好地匹配典型的灰分粒径,比现有的更长波长的天气雷达测量结果具有更高的灵敏度,并且具有直接测量灰分粒径的独特能力。在这里,我们在开发水灰灰毫米波光谱仪(WAMS)仪器的背景下介绍了灵敏度计算。 WAMS是一种专为使用现成组件而设计的雷达/辐射计系统,能够在整个喷发云中测量水蒸气和灰分,这是一项独特的功能。

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