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首页> 外文期刊>Journal of Volcanology and Geothermal Research >High-resolution imaging of hydrothermal heat flux using optical and thermal Structure-from-Motion photogrammetry
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High-resolution imaging of hydrothermal heat flux using optical and thermal Structure-from-Motion photogrammetry

机译:光学和热动结构摄影测量技术对水热通量的高分辨率成像

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摘要

Quantifying hydrothermal heat flux at meter-scale resolution over >0.25 km(2) is required to bridge in-situ heat flux and satellite-based measurements. We advance a methodology that blends ground-based daytime optical and nighttime thermal infrared (TIR) imagery using Structure-from-Motion photogrammetry to map radiant hydrothermal heat flux over these scales at sites with low signal-to-noise ratios that would otherwise be difficult to characterize using, for example, unmanned aerial systems. The improved method uses a computerized telescopic mount to relocate and align daytime optical acquisitions with nighttime TIR imagery, thereby enabling TIR acquisition from multiple camera orientations positioned throughout a study area. This facilitates mapping of thermal features at sites of vaiying size and complexity and helps to ameliorate topographic occlusion effects and geometric distortions that can bias radiant hydrothermal heat flux estimates derived from the resulting orthorectified thermal maps. We assessed detection thresholds of this method at three sites across central California, which range in size, topography, and heat flux conditions. We found that blending of optical and thermal acquisitions successfully detected anomalous heat flux, even in cases where temperatures were only slightly greater than background. This approach might be applied to a variety of volcanic and hydrothermal systems to quantify the spatial distribution of heat flux, and how this may relate to factors such as the distribution of ground fractures and lava flow theology. (C) 2020 Elsevier B.V. All rights reserved.
机译:需要以超过0.25 km(2)的米级分辨率对水热热通量进行量化,以桥接现场热通量和基于卫星的测量。我们提出了一种方法,该方法将基于地面的白天光学和夜间热红外(TIR)图像融合在一起,并使用“从动结构”摄影测量法在低信噪比的站点上以这些比例绘制辐射水热通量使用例如无人驾驶航空系统来表征改进的方法使用计算机化的伸缩式支架将白天的光学采集与夜间的TIR图像进行重新定位和对齐,从而可以从整个研究区域中的多个摄像机方向进行TIR采集。这有利于在大小和复杂性不同的位置绘制热特征,并有助于改善地形遮挡效果和几何变形,这些变形可能会使从正射热图生成的辐射水热通量估算值产生偏差。我们在整个加利福尼亚中部的三个地点(大小,地形和热通量条件)评估了该方法的检测阈值。我们发现,即使在温度仅比背景稍高的情况下,光学和热采集的混合也可以成功检测到异常的热通量。这种方法可能适用于各种火山和热液系统,以量化热通量的空间分布,以及它如何与诸如地面裂缝分布和熔岩流神学等因素相关。 (C)2020 Elsevier B.V.保留所有权利。

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