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Titlebook: Characterizing Groundwater Flow Dynamics and Storage Capacity in an Active Rock Glacier; Simon Seelig Book 2022 The Editor(s) (if applicab

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發(fā)表于 2025-3-21 16:46:42 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Characterizing Groundwater Flow Dynamics and Storage Capacity in an Active Rock Glacier
編輯Simon Seelig
視頻videohttp://file.papertrans.cn/225/224029/224029.mp4
叢書名稱BestMasters
圖書封面Titlebook: Characterizing Groundwater Flow Dynamics and Storage Capacity in an Active Rock Glacier;  Simon Seelig Book 2022 The Editor(s) (if applicab
描述Alpine aquifers play a critical role in the hydrology of mountainous areas by sustaining base flow in downstream rivers during dry periods and retarding flood propagation after heavy precipitation events. Progressing climate change alters climatic and meteorological boundary conditions as well as the hydraulic response of alpine catchments by ablating glaciers and thawing permafrost. Rock glaciers exert a controlling influence on the catchment response due to their prominent groundwater storage and complex drainage characteristics. This thesis investigates the hydrogeology and internal structure of the active rock glacier Innere ?lgrube (?tztal Alps), which governs catchment runoff and is affected by permafrost degradation. A 3D geometrical model of its internal structure is obtained by combining geophysical data and permafrost creep modelling. Available data and new results are integrated into a conceptual hydrogeological model providing a sound basis for the implementation of a prospective numerical groundwater flow model. Hydraulic properties of the hydrostratigraphic units constituting the rock glacier are estimated and groundwater recharge fluxes quantified. Fundamental proper
出版日期Book 2022
關(guān)鍵詞Groundwater flow; Hydraulic properties; Active rock glacier; Conceptual model; Storage capacity; Austria
版次1
doihttps://doi.org/10.1007/978-3-658-37073-2
isbn_softcover978-3-658-37072-5
isbn_ebook978-3-658-37073-2Series ISSN 2625-3577 Series E-ISSN 2625-3615
issn_series 2625-3577
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Fachmedien Wies
The information of publication is updating

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2625-3577 Hydraulic properties of the hydrostratigraphic units constituting the rock glacier are estimated and groundwater recharge fluxes quantified. Fundamental proper978-3-658-37072-5978-3-658-37073-2Series ISSN 2625-3577 Series E-ISSN 2625-3615
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Discussion,ogical behavior of the Innere ?lgrube are identified by Wagner et al. (in prep.). The integration of a distributed parameter model focusing on dominant processes at the rock glacier scale into this generic framework requires a coordinated evaluation of models characterizing different scales (Grayson and Bl?schl, 2000; Sivapalan et al., 2003).
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發(fā)表于 2025-3-22 20:58:28 | 只看該作者
https://doi.org/10.1007/b138901wnstream rivers and aquifers. The Alpine climate has been subject to significant changes during the last decades and is expected to be affected by the global climate response to increasing greenhouse gas concentrations during the 21. century (Gobiet et al., 2014). River peak runoff is predicted to s
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https://doi.org/10.1007/b138901 data using a multi-disciplinary approach. Evaluation of surface displacement rates within the framework of a simple creep model yields a first approximation of the permafrost thickness distribution in those parts of the rock glacier that are not covered by geophysical measurements. A 3D geometrical
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發(fā)表于 2025-3-23 06:09:07 | 只看該作者
Konrad Maurer,Nicolas Lang,Joachim Eckert points derived from the geophysical profiles, and 5510 surface displacement vectors distributed across the rock glacier surface. Long-term creep rates are calculated using . = 3, . = 2.4·10. Pa.?s., . = 1604 kg?m., and . = 1826.67 kg?m.. The obtained model consists of a set of four continuous surfa
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