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Monitoring heat losses using Landsat ETM+ thermal infrared data - a case study at Kuju fumarolic area in Japan

机译:使用Landsat ETM +红外热数据监测热损失-以日本九州富马政区为例

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To monitor heat losses using Landsat 7 thermal infrared data from 2002 to 2010 within the active fumarolic region of Kuju volcano in Japan, we used the Stefan-Boltzmann equation for radiative heat flux (RHF) estimation. Heat discharge rate (HDR) was calculated by using the relationship coefficient of RHF and HDR, obtained from two previous studies. The highest total RHF was found to be about 57.7 MW in 2002 and the lowest was about 21.1 MW in 2010. We found the highest HDR, of about 384.5 MW, in 2002 and the lowest, of about 140.8 MW, in 2010. The RHF anomalous areas were showing a declining trend during our study period. The relationship between the land surface temperature (LST) above ambient and RHF was, as expected, in a strong correlation for each result during our study period. Overall, our study was able to delineate the declining trend of heat losses that supports a previous study of similar declining trend of HDR using steam maximum diameter method from the active fumarolic region of Kuju volcano.
机译:为了使用2002年至2010年日本Kuju火山活火山地区中Landsat 7热红外数据监测热损失,我们使用Stefan-Boltzmann方程估算辐射热通量(RHF)。通过使用RHF和HDR的关系系数来计算散热率(HDR),该关系系数是从先前的两项研究中获得的。发现最大的RHF大约是2002年的57.7 MW,最低的大约是2010年的21.1 MW。我们发现最大的HDR大约是2002年的384.5 MW,最低的是2010年的140.8 MW。在我们的研究期间,异常区域呈下降趋势。正如预期的那样,在我们的研究期间,每个结果的陆地表面温度(LST)与RHF之间的关系都密切相关。总体而言,我们的研究能够描绘出热量损失的下降趋势,这支持了先前使用九州火山活期富马地区的蒸汽最大直径法对HDR的类似下降趋势进行的研究。

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