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Determination of Geothermal Anomalies Through Multivariate Regression of Background Variables at Yellowstone National Park Using Landsat 5 TM Thermal Band Data

机译:利用Landsat 5 TM热带数据通过多变量的多变量的多变量回归测定地热异常

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Geothermal anomalies of Yellowstone National Park (YNP) are identified and quantified using Landsat 5 TM thermal band data. Multivariate regression of independent background variables that effect thermal emissivity, including elevation, slope, aspect, insolation, vegetation, water, soil moisture, and exposed land, were utilized in this study to create a comprehensive background filter for the raw imagery. Subtracting the multivariate background model from raw Landsat 5 TM data accentuates large geothermal anomalies such as Grand Prismatic and less thermally evident features such as the Old Faithful Geyser while removing significant false anomalies from the imagery. Geothermal anomaly emittances within YNP were calculated with a range of 40-120 W/m2. False positives for geothermal activity were reduced in the scene, with remaining ones focused on bare earth slope, consistent with other studies. A differencing between known geothermal pool temperatures and model residual temperatures at 25 sites indicates an average difference of 347 K (stdev 12 K), suggesting scalability from residual output to corrected temperature detection. The methodology employed for detecting known geothermal anomalies in YNP could be utilized to detect unknown geothermal potential in underexplored geothermal regions.
机译:使用Landsat 5 TM热带数据确定和量化黄石国家公园(YNP)的地热异常。在本研究中使用了影响热发射率的独立背景变量,包括高度,坡度,方面,缺失,植被,水,土壤水分和暴露的土地,为原始图像创建综合背景滤波器。从原始Landsat 5 TM数据中减去多变量背景模型,突出大型地热异常,例如古老的棱镜和较少的热敏功能,例如老忠实的间歇性,同时从图像中取出重大的虚假异常。 YNP内的地热异常助力均计算,范围为40-120瓦/平方米。现场降低了地热活动的误报,其余部分集中在裸露的地球坡上,与其他研究一致。在25个位点的已知地热池温度和模型剩余温度之间的差异表示347k(STDEV 12 k)的平均差,表明从残留输出到校正温度检测的可扩展性。用于检测YNP中已知地热异常的方法可用于检测未引人注目的地热区中未知的地热势。

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