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Integrated velocity field from ground and satellite geodetic techniques: application to Arenal volcano

机译:地面和卫星大地测量技术的综合速度场:在阿雷纳尔火山中的应用

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摘要

Measurements of ground deformation can be used to identify and interpret geophysical processes occurring at volcanoes. Most studies rely on a single geodetic technique, or fit a geophysical model to the results of multiple geodetic techniques. Here we present a methodology that combines GPS, Total Station measurements and InSAR into a single reference frame to produce an integrated 3-D geodetic velocity surface without any prior geophysical assumptions. The methodology consists of five steps: design of the network, acquisition and processing of the data, spatial integration of the measurements, time series computation and finally the integration of spatial and temporal measurements. The most significant improvements of this method are (1) the reduction of the required field time, (2) the unambiguous detection of outliers, (3) an increased measurement accuracy and (4) the construction of a 3-D geodetic velocity field. We apply this methodology to ongoing motion on Arenal's western flank. Integration of multiple measurement techniques at Arenal volcano revealed a deformation field that is more complex than that described by individual geodetic techniques, yet remains consistent with previous studies. This approach can be applied to volcano monitoring worldwide and has the potential to be extended to incorporate other geodetic techniques and to study transient deformation
机译:地面变形的测量可用于识别和解释火山中发生的地球物理过程。大多数研究都依赖于一种大地测量技术,或将一种地球物理模型适合多种大地测量技术的结果。在这里,我们提出了一种将GPS,全站仪​​测量和InSAR组合到单个参考系中的方法,无需事先进行任何地球物理假设即可生成一个集成的3D大地速度表面。该方法包括五个步骤:网络设计,数据采集和处理,测量值的空间集成,时间序列计算以及最后的空间和时间测量值集成。该方法最显着的改进是(1)减少所需的现场时间,(2)明确检测异常值,(3)提高测量精度,以及(4)构建3-D大地速度场。我们将此方法应用于阿雷纳尔西部侧面的持续运动。阿雷纳尔火山的多种测量技术的集成显示出变形场比单个大地测量技术所描述的更为复杂,但仍与先前的研究一致。这种方法可以应用于世界范围内的火山监测,并且有可能扩展到结合其他大地测量技术和研究瞬态变形

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