Effects of Spatiotemporal Constraints on Geostatistical Analysis of Groundwater Depth

Author:

Hellman Amit1,Pe'er Gilboa2,Kniffin Maribeth L.3,Kamai Ronnie4ORCID

Affiliation:

1. Department of Earth and Environmental Sciences Ben‐Gurion University of the Negev Beersheba Israel

2. Nuclear Research Center Negev Beersheba Israel

3. Department of Land, Air, and Water Resources University of California, Davis Davis CA USA

4. Department of Civil and Environmental Engineering Ben‐Gurion University of the Negev Beersheba Israel

Funder

Israel Science Foundation

Publisher

Wiley

Subject

Computers in Earth Sciences,Water Science and Technology

Reference42 articles.

1. On the use of high‐resolution topographic data as a proxy for seismic site conditions (VS30);Allen T.I.;Bulletin of the Seismological Society of America,2009

2. Fluid wave propagation in saturated and nearly saturated sand;Allen F.E.;Journal of the Geotechnical Engineering Division, ASCE,1980

3. Baise L.G. andV.Rashidian.2018.A geospatial approach to liquefaction assessment for rapid response and loss estimation. Paper read at Geotechnical Earthquake Engineering and Soil Dynamics V Austin Texas.

4. Liquefaction hazard mapping—Statistical and spatial characterization of susceptible units;Baise L.G.;Journal of Geotechnical and Geoenvironmental Engineering,2006

5. Ball J. E. S.Vongphachanh W.Milne‐Home andA.Das Gupta.2017.Seasonal groundwater level fluctuations in Sukhuma District of southern Laos. Paper read at 37th IAHR World Congress Kuala Lumpur Malaysia.

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