A Study on Structural Safety of Concrete Arch Dams During Construction and Operation Phases
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geology,Soil Science,Geotechnical Engineering and Engineering Geology,Architecture
Link
http://link.springer.com/content/pdf/10.1007/s10706-018-0628-2.pdf
Reference38 articles.
1. Alonso EE, Pinyol NM, Pineda J (2014) Foundation of a gravity dam on layered soft rock: shear strength of bedding planes in laboratory and large “in situ” tests. Geotech Geol Eng 32(6):1439–1450
2. Azmi M, Paultre P (2002) Three-dimensional analysis of concrete dams including contraction joint non-linearity. Eng Struct 24(6):757–771
3. Bayraktar A, Altunışık AC, Sevim B, Kartal ME, Türker T, Bilici Y (2009) Comparison of near and far fault ground motion effects on the nonlinear response of dam-reservoir-foundation systems. Nonlinear Dyn 58(4):655–673
4. Bofang Z (1997) Prediction of water temperature in deep reservoir. Dam Engineering 8(1):13–25
5. Chen S-h, Qiang S, Shahrour I, Egger P (2008) Composite element analysis of gravity dam on a complicated rock foundation. Int J Geomech 8(5):275–284
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