4 edition of Numerical simulation of land subsidence in the Los Banos-Kettleman City area, California found in the catalog.
Numerical simulation of land subsidence in the Los Banos-Kettleman City area, California
Keith J. Larson
Published
2001
by University of California Water Resources Center in Riverside, CA
.
Written in
Edition Notes
Statement | Keith J. Larson, Hakan Basagaoglu, Miguel Mariño. |
Series | Contribution ;, #207, Contribution (California Water Resources Center) ;, no. 207. |
Contributions | Basagaoglu, Hakan., Marino, Miguel A., California Water Resources Center. |
Classifications | |
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LC Classifications | QE705.C2 C27 no. 207 |
The Physical Object | |
Pagination | viii, 83 p. : |
Number of Pages | 83 |
ID Numbers | |
Open Library | OL4016348M |
ISBN 10 | 1887192131 |
LC Control Number | 2001387030 |
OCLC/WorldCa | 46464394 |
Prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numerical simulation model KJ Larson, H Başaǧaoǧlu, MA Marino Journal of hydrology (), , دریافت مقاله با ترجمه فارسی Elsevier: Simulation of Water Filtration in Porous Zone Based on Darcy's Law دانلود رایگان مقاله.
b: Land subsidence in the Los Banos Kettleman City area, California; Part 2, Subsidence and compaction of deposits. United States Geological Survey Professial Paper F. (90 pp.) Google Scholar. Abstract Land subsidence and uplift, ground ruptures, and induced seismicity are the principal geomechanic Key Points: Major geomechanical effects of groundwater withdrawal and water injection Numerical modeling of geomechanics as related to water withdrawal and injection Advances in measuring ground displacement by satellite technology.
Numerical Simulation of Land Subsidence in the Los Banos-Kettleman City Area, California Keith J. Larson, Hakan Basagaoglu (Department of Civil and Environmental Engineering, University of California, Davis) and Miguel Mariño (Department of Land, Air and Water Resources, University of California, Davis). January 83 pp., ISBN One of the most important regional land subsidence in the world has been reported in California, USA, in [12]. There was about 8 m settlement due to the uncontrolled exploitation of groundwater for agricultural use. Until , the amount of subsidence increased to 10 m due to 50 m water level dropping in this region [13].
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Author(s): Larson, Keith J; Basagaoglu, Hakan; Marino, Miguel A | Abstract: Land subsidence caused by the excessive use of ground water resources has traditionally caused serious and costly damage to the Los Banos-Kettleman City area of California's San Joaquin Valley.
Although the arrival of surface water from the Central Valley Project has reduced subsidence Cited by: 2. Get this from a library. Numerical simulation of land subsidence in the Los Banos-Kettleman City area, California. [Keith J Larson; Hakan Basagaoglu; Miguel A Marino; California Water Resources Center.].
Numerical Simulation of Land Subsidence in the Los Banos-Kettleman City Area, California. By Keith J Larson, Hakan Basagaoglu and Miguel A Marino. Abstract. Land subsidence caused by the excessive use of ground water resources has traditionally caused serious and costly damage to the Los Banos-Kettleman City area of California's San Joaquin.
(a) Observed land subsidence for the Los Banos-Kettleman City area, – (Ireland et al., ); and (b) simulated land subsidence for the Los Banos-Kettleman City area, – There are four major subsidence parameters determined during the calibration process: hydraulic conductivity, elastic storage coefficient, inelastic Cited by: Land subsidence caused by the excessive use of ground water resources has traditionally caused serious and costly damage to the Los Banos-Kettleman City area of California's San Joaquin Valley.
Although the arrival of surface water from the Central Valley Numerical simulation of land subsidence in the Los Banos-Kettleman City area has reduced subsidence in recent decades, the growing instability of surface water Cited by: Numerical Simulation of Land Subsidence in the Los Banos-Kettleman City Area, California.
By Keith J Larson, Hakan Basagaoglu and Miguel Marino. Abstract. Land subsidence caused by the excessive use of groundwater resources has traditionally caused serious and costly damage to the Los Banos-Kettleman City area of California's San Joaquin. Prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numerical simulation model [J].
Journal of Hydrology, (). DOI: /s(00) MODFLOW numerical modeling has been used to simulate groundwater flow (Mc Donald and Harbaugh, ) and the interbed storage package (IBS1) in MODFLOW to simulate land subsidence (Leake and Prudic, ), determine the layer compaction coefficient, and estimate the groundwater safe yield in Los Banos–Kettleman City, California (Larson et al.
K.J Larson, H Başaǧaoǧlu, M.A Mariño, Prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numerical simulation model, Journal of Hydrology, /S(00),1.
Larson KJ, Başaǧaoǧlub H, Marino MA () Prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numerical simulation model. J Hydrol – Article Google Scholar.
Land subsidence caused by the excessive use of groundwater resources has traditionally caused serious and costly damage to the Los Banos-Kettleman City area of California.
Larson, H. Basagaoglu and M. Marino, “Prediction of Optimal Safe Ground Water Yield and Land Subsidence in the Los Banos-Kettleman City Area, California, Using a Calibrated Numerical Simulation Model,” Journal of Hydrology, Vol. No.pp. Subway foundation pit dewatering may contribute to the regional land subsidence in a built-up area when aquifers are too thick to be cut off by a curtain.
Kettleman City area, California. Drought and Immethodical ground water withdrawal in recent years has caused numerous problems such as subsidence due to falling of subsurface water table, the reduction of water quality, etc. in cities across the world. This research as a case study deals with harmful effects of subsurface water withdrawal in the city of Kerman and practical monitoring of the subsidence.
Larson JK, Basagaoglu H, Marino MA () Prediction of optimal safe groundwater yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numberical simulation model.
Journal of. Land subsidence due to ground-water withdrawal in the Los Banos-Kettleman City area, California; Part 3, Interrelations of water-level change, change in aquifer-system thickness, and subsidence,Professional Paper G. Larson, K.J. Larson, H. Bas¸agˇaogˇlu, M.A.
Marino (), “Prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numerical simulation model”, Journal of Hydrology,Pp [5].
Larson KJ, Basagaoglu H, Marino MA. prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman city area, California, using a calibrated numerical simulation model. Journal of hydrology. ; such as the Los Banos-Kettleman City area in California (Larson et al., ), the Emilia-Romagna coastland of Italy (Teatini et al., ), and the Shanghai area of China (Zhang et al., ).
Similar work was carried out by Liu et al. (), who studied subsidence and its mechanism in an area north of Yunlin. Numerical Simulation of Land Subsidence in the Los Banos-Kettleman City Area, CaliforniaCited by: 7.
The article reports a study of the influence of regional land subsidence on the km long Su-tong Yangtze River Bridge. The characteristics of the major compressive geological layers and their potential to settlement are discussed in the light of the past and continuing groundwater exploitation in the area.
A numerical model for land subsidence .Prediction of optimal safe ground water yield and land subsidence in the Los Banos-Kettleman City area, California, using a calibrated numerical simulation model. Journal of Hydrology, Liu, C.W., Lin, W.S.
& Cheng, L.H., Estimation of land subsidence caused by loss of smectite-interlayer water in shallow aquifer systems. The QWD Numerical Simulation of Groundwater Flow project has been proposed to provide water to the area of and Land Subsidence the Hangzhou City from to water yield and land subsidence in the Los Banos– subsidence and prediction approaches due to groundwater Kettleman City area, California, using a calibrated numerical.