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Monitoring Heat Losses Using Landsat ETM + Thermal Infrared Data: A Case Study in Unzen Geothermal Field, Kyushu, Japan

机译:使用Landsat ETM +热红外数据监测热损失:以日本九州云仙地热田为例

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摘要

The Unzen geothermal field, our study area, is situated in the Shimabara Peninsula of Kyushu Island in Japan and is an area of active fumaroles. Our prime objectives were (1) to estimate radiative heat flux (RHF), (2) to calculate approximately the heat discharge rate (HDR) using the relationship of RHF with the total heat loss derived from two geothermal field studies, and (3) finally, to monitor RHF as well as HDR in our study area using seven sets of Landsat 7 ETM + images from 2000 to 2009. We used the normalized differential vegetation index (NDVI) method for spectral emissivity estimation, the mono-window algorithm for land surface temperature (LST), and the Stefan-Boltzmann equation analyzing those satellite TIR images for RHF. We estimated that the maximum RHF was about 251 W/m2 in 2005 and minimum was about 27 W/m2 in 2001. The highest total RHF was about 39.1 MW in 2005 and lowest was about 12 MW in 2001 in our study region. We discovered that the estimated RHF was about 15.7 % of HDR from our studies. We applied this percentage to estimate HDR in Unzen geothermal area. The monitoring results showed a single fold trend of HDR from 2000 to 2009 with highest about 252 MW in 2005 and lowest about 78 MW in 2001. In conclusion, TIR remote sensing is thought as the best option for monitoring heat losses from fumaroles with high efficiency and low cost.
机译:云仙地热场是我们的研究区域,位于日本九州岛的岛原半岛,是一个富喷气孔地区。我们的主要目标是(1)估计辐射热通量(RHF),(2)使用RHF与两次地热研究得出的总热损失之间的关系来近似计算散热率(HDR),以及(3)最后,使用2000年至2009年的7套Landsat 7 ETM +图像对我们研究区域的RHF和HDR进行监测。表面温度(LST)和Stefan-Boltzmann方程分析了这些卫星TIR图像的RHF。我们估计2005年的最大RHF约为251 W / m2,而2001年的最小值约为27 W / m2。在我们的研究区域中,2005年的最高RHF约为39.1 MW,而最低的2001年约为12 MW。我们发现,根据我们的研究,估计的RHF约为HDR的15.7%。我们应用此百分比来估算云仙地热区的HDR。监测结果显示,从2000年到2009年,HDR呈单一趋势,2005年最高,约为252 MW,2001年最低,约为78 MW。总之,TIR遥感被认为是高效监测烟火石热量损失的最佳选择。且价格低廉。

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