Ground Penetrating Radar Techniques For Quantifying Water Distribution In Glacial Ice PDF Download

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Remote Sensing of Glaciers

Remote Sensing of Glaciers
Author: Petri Pellikka
Publisher: CRC Press
Total Pages: 340
Release: 2009-12-16
Genre: Science
ISBN: 0203851307

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Glaciers and ice sheets have been melting significantly during recent decades, posing environmental threats at local, regional and global scales. Changes in glaciers are one of the clearest indicators of alterations in regional climate, since they are governed by changes in accumulation (from snowfall) and ablation (by melting of ice). Glacier chan


Ground Penetrating Radar

Ground Penetrating Radar
Author: David J. Daniels
Publisher: IET
Total Pages: 760
Release: 2004-08-20
Genre: Technology & Engineering
ISBN: 9780863413605

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This book describes the key elements of the subject of surface penetrating radar, and in general terms the inter-relationship between those topics in electromagnetism, soil science, geophysics and signal processing which form part of its design.


Radioglaciology

Radioglaciology
Author: V.V. Bogorodsky
Publisher: Springer Science & Business Media
Total Pages: 265
Release: 2012-12-06
Genre: Science
ISBN: 9400952759

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Antarctica, the sixth continent, was discovered more than 160 years ago. Since then this large, mysterious continent of ice and penguins has attracted world interest. Scientific expeditions from various countries have begun to study the geographical and natural conditions of the icy continent. Systematic and comprehensive inves tigations in the Antarctic started in the middle of our century. In 1956 the First Soviet Antarctic Expedition headed to the coast of Antarctica. Their program included studies of the atmosphere, hydrosphere and cryosphere. Thirty years have since passed. Scientists have unveiled many secrets of Antarctica: significant geophysical processes have been investigated, and a large body of new information on the Antarctic weather, Southern Ocean hydrology and Antarctic glaciers has been obtained. We can now claim that the horizons of polar geo physics, oceanology, and particularly glaciology, have expanded. Scientific inves tigators have obtained new information about all Antarctic regions and thus have created the opportunity to use the Antarctic in the interests of mankind.


Multi-channel Ground-penetrating Radar for the Continuous Quantification of Snow and Firn Density, Depth, and Accumulation

Multi-channel Ground-penetrating Radar for the Continuous Quantification of Snow and Firn Density, Depth, and Accumulation
Author: Tate Meehan
Publisher:
Total Pages: 142
Release: 2018
Genre: Ground penetrating radar
ISBN:

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"A priority of ice sheet surface mass balance (SMB) prediction is ascertaining the surface density and annual snow accumulation. These forcing data are inputs for firn density models and can be used to inform remotely sensed ice sheet surface processes and to assess Regional Climate Model (RCM) skill. The Greenland Traverse for Accumulation and Climate Studies (GreenTrACS) retrieved 16 shallow firn cores and dug 42 snow pits along the Western percolation zone of the Greenland Ice Sheet (GrIS) during May and June of 2016 and 2017. I deployed and maintained a multi-channel 500 MHz ground-penetrating radar in a multi-offset configuration throughout the two traverse campaigns. The multi-channel radar technique accurately and independently estimates density, depth, and annual snow accumulation -- between the firn core and snow pit sites -- by horizon velocity analysis of common midpoint radar reflections from the snow and shallow firn. I analyzed a 45 km section of the traverse in a high accumulation zone, known as the GreenTrACS Core 15 Western Spur. Deviations in surface density up to +- 15 kg/m3 from the transect mean correlate with surface elevation and surface slope angle. Spatial variation in mean annual accumulation of ~0.175 m w.e. a−1 occurs across a trough in the surface topography ~5 km wide. The reported variability of density and accumulation demonstrates that RCMs must be down-scaled to resolutions within 5 km to assess subtle yet significant contributions to the GrIS SMB."--Boise State University ScholarWorks.


Ground Penetrating Radar Theory and Applications

Ground Penetrating Radar Theory and Applications
Author: Harry M. Jol
Publisher: Elsevier
Total Pages: 545
Release: 2008-12-08
Genre: Science
ISBN: 0080951848

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Ground-penetrating radar (GPR) is a rapidly developing field that has seen tremendous progress over the past 15 years. The development of GPR spans aspects of geophysical science, technology, and a wide range of scientific and engineering applications. It is the breadth of applications that has made GPR such a valuable tool in the geophysical consulting and geotechnical engineering industries, has lead to its rapid development, and inspired new areas of research in academia. The topic of GPR has gone from not even being mentioned in geophysical texts ten years ago to being the focus of hundreds of research papers and special issues of journals dedicated to the topic. The explosion of primary literature devoted to GPR technology, theory and applications, has lead to a strong demand for an up-to-date synthesis and overview of this rapidly developing field. Because there are specifics in the utilization of GPR for different applications, a review of the current state of development of the applications along with the fundamental theory is required. This book will provide sufficient detail to allow both practitioners and newcomers to the area of GPR to use it as a handbook and primary research reference. *Review of GPR theory and applications by leaders in the field*Up-to-date information and references*Effective handbook and primary research reference for both experienced practitioners and newcomers


Ground Penetrating Radar

Ground Penetrating Radar
Author: Geological Survey of Canada
Publisher:
Total Pages: 260
Release: 1992
Genre: Science
ISBN: 9780660145389

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This paper describes some procedures for interactive radar modelling which can be used to define parameters for optimal system configuration prior to field survey work. It then outlines the procedures for estimating radar range, for generating synthetic radargrams, and for calculating simple ray tracing travel time. Examples of results are presented.