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Web-based application for inverting one-dimensional magnetotelluric data using Python

机译:基于Web的应用程序,用于使用Python反转一维大地电磁数据

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One-dimensional modeling of magnetotelluric (MT) data has been performed using an online application on a web-based virtual private server. The application was developed with the Python language using the Django framework with HTML and CSS components. The input data, including the apparent resistivity and phase as a function of period or frequency with standard deviation, can be entered through an interactive web page that can be freely accessed at https://komputasi.geofisika.ugm.ac.id. The subsurface models, represented by resistivity as a function of depth, are iteratively improved by changing the model parameters, such as the resistivity and the layer depth, based on the observed apparent resistivity and phase data. The output of the application displayed on the screen presents resistivity as a function of depth and includes the RMS error for each iteration. Synthetic and real data were used in comparative tests of the application's performance, and it is shown that the application developed accurate subsurface resistivity models. Hence, this application can be used for practical one-dimensional modeling of MT data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大地电磁(MT)数据的一维建模已使用基于Web的虚拟专用服务器上的在线应用程序执行。该应用程序是使用带有HTML和CSS组件的Django框架使用Python语言开发的。可以通过可在https://komputasi.geofisika.ugm.ac.id上自由访问的交互式网页输入输入数据,包括视电阻率和相位作为周期或频率的函数(具有标准偏差)。根据观察到的视电阻率和相位数据,通过更改模型参数(例如电阻率和层深度),可以迭代地改善由电阻率表示的深度的地下模型。屏幕上显示的应用程序输出将电阻率作为深度的函数,并包括每次迭代的RMS误差。在应用程序性能的比较测试中使用了合成数据和真实数据,结果表明该应用程序开发了准确的地下电阻率模型。因此,该应用程序可用于MT数据的实际一维建模。 (C)2016 Elsevier Ltd.保留所有权利。

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