Several established non-commercial inversion codes exist, but they typically require advanced knowledge to use effectively. Although field surveys using these methods are relatively straightforward, ERT and IP data require the application of inverse methods prior to any interpretation. doi:10.13140/RG.1.63205 <<<<<<Įlectrical resistivity tomography (ERT) and induced polarization (IP) methods are now widely used in many interdisciplinary projects. 3D Geoelectrical Problems with ResIPy, an Open Source Graphical User Interface for Geoelectrical Data Processing. Reduction of complexity normally associated with 3D surveyīoyd, J., Blanchy, G., Saneiyan, S., McLachlan, P., & Binley, A. In both cases, ResIPy allows relatively rapid data analysis and Second is a high resolution 3D survey of a river terrace deposit. The first case study is a 3D time lapse study ofĪn active landslide with complex geology and topography, the Processing of 3DĮRT data with ResIPy is demonstrated and two case studiesĪre showcased. This paper we focus only on the 3D aspect. The software is basedĪround the mature inversion codes R2, cR2, R3t, and cR3t. Induced polarization (IP) surveys, and has recently been ResIPy is capable of processingĭata from both electrical resistivity tomography (ERT) and Processing workflow, including data filtering, mesh generation, Taking the user through each step of the geoelectrical data User interface (GUI) which utilises a modern tabbed design This paperĬomplements recent presentations of ResIPy, an open source,Īnd user-friendly, alternative. Geophysics or programming to be used effectively. Mature modellingĬodes exist, but they often require advanced knowledge of However, data processing can be challenging. For field applications,Ĭollection of geoelectrical data is relatively straightforward, Increasingly widespread for near surface investigations in manyĭisciplines, due to their sensitivity to a wide variety of geologicalĪnd hydrogeological properties. The applications of geoelectrical methods are becoming
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