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Erschienen in: Geotechnical and Geological Engineering 4/2016

26.04.2016 | Original paper

Simulation for the Spatial–Time Characteristics of High Arch Dam

verfasst von: Lichun Zou, Shenghong Chen, Guojin Wang, Shaojun Fu, Xianliang Tang, Qing Xu, Zhiyong Zhao, Weiming Wang, Min Xie, Ji He

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 4/2016

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Abstract

As a kind of slim shell structure flexibly based on its deformable foundation, high concrete arch dam exhibits remarkable spatial–time characteristics. In this paper, the Xiaowan Hydropower Project accommodating 294.5 m high double curvature arch dam is taken as example, to which the factor of time is introduced in the whole numerical simulation procedure. The dynamic inputting of the parameters related to the structural geometry and material properties (e.g. thermal, permeability, deformation/stress) following the construction progress is realized in an intension to establish a four-dimensional (spatial–time) numerical simulation procedure. The Digitized System of Xiaowan Arch Dam (DSXAD) is further formulated by the combination of the instrumentation system, the spatial–time simulation procedure, and the engineering judgments. The DSXAD has been working well in tracing the real working status of the dam during its construction period as well as service period. A series of difficult technical issues in the construction of the Xiaowan Dam are successfully solved with the help of the DSXAD. Through this practices important theoretical insights are achieved, which founds a new landmark for the high arch dam construction in China.

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Metadaten
Titel
Simulation for the Spatial–Time Characteristics of High Arch Dam
verfasst von
Lichun Zou
Shenghong Chen
Guojin Wang
Shaojun Fu
Xianliang Tang
Qing Xu
Zhiyong Zhao
Weiming Wang
Min Xie
Ji He
Publikationsdatum
26.04.2016
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 4/2016
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-016-0017-7

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