大坝堆石蠕变简化模型及混凝土面板施工延误的影响

IF 1.1 Q4 ENGINEERING, GEOLOGICAL
Renato Raposo, Yasletty Zamora Hernández, A. Assis
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引用次数: 0

摘要

岩土工程设备和工具的进步使设计能够得到数值模拟的支持。然而,即使拥有丰富的资源,大坝岩土工程行业仍然缺乏关于混凝土面板堆石坝(CFRD)实验室参数的信息。为了寻找可在行业中应用的工具,有必要简化代表真实CFRD的反向分析的使用。目标包括简化与表示垂直蠕变的线性系数相关的线性模块的行为,并评估特定情况下混凝土面施工延迟的影响。本文以实际面板堆石坝模拟实例为理论背景。CFRD校准模型包括一个只有两个校准参数的正交各向异性垂直堆石蠕变的优雅表示。从CFRD获得的位移用线性弹性本构模型表示,该模型具有随时间变化的线性垂直变形。结果在施工阶段和填筑期间都得到了很好的调整。此外,还模拟了六种不同的板构造延迟排序安排。该研究使用了一种数字设备,使混凝土板达到正确的设计厚度成为可能。在应力结果中,堆石之后的板的逐步顺序达到了最差的水平应力,几乎达到45MPa,这超过了传统混凝土的典型抗压强度,而传统混凝土会影响板的结构完整性。结果表明,应避免逐步测序。在所研究的案例中,在混凝土浇筑的情况下,可以实现平衡行为,保持面板的施工延迟至少为大坝高度的一半。需要指出的是,所有这些工作考虑因素都是一个具体的例子。应避免任何概括,或将其与更广泛的补充研究联系起来,因为每个大坝都是一项独特的工作,必须逐个研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simplified model for dam rockfill creep and influence of constructive delay of concrete face
Advances in equipment and tools implemented for geotechnics have been allowing design to be supported by numerical simulations. However, even with sophisticated resources, the dam geotechnical engineering industry still lacks few information on laboratory parameters as in the case of Concrete Face Rockfill Dams (CFRD). It is necessary to simplify the use of back-analysis that represent real CFRD, in search of tools that can be applied in the industry. The objectives include the simplification of the behavior of the linear modules associated with a linear coefficient representing the vertical creep and evaluation of the influence of the constructive delay of the concrete face in a specific case. The text goes through examples of real CFRD simulations, as a theoretical background. The CFRD calibration model includes an elegant representation of the vertical orthotropic rockfill creep with only two calibration parameters. The displacements obtained from a CFRD are represented with a linear elastic constitutive model with linear vertical deformation in time. The result is well adjusted both in the construction phase and during filling. Further on, six different slab constructive delay sequencing arrangements were simulated. The study uses a numerical device that makes it possible to drive the concrete slab in its correct design thickness. Among the stress results, the step-by-step sequencing of the slab following the rockfill reached the worst horizontal stresses, reaching almost 45 MPa, which exceeds the typical compressive strengths of conventional concretes that can affect the structural integrity of the slab. The results suggest that step-by-step sequencing should be avoided. In the case studied, the balanced behavior could be achieved in a concreting scenario maintaining the constructive delay of the slab with at least half the height of the dam. It is important to point out that all this work considerations serve for a specific example. Any generalization should be avoided or associated with broader complementary studies, as each dam is a unique work and must be studied individually, case by case.
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来源期刊
Soils and Rocks
Soils and Rocks ENGINEERING, GEOLOGICAL-
CiteScore
1.00
自引率
20.00%
发文量
49
期刊介绍: Soils and Rocks publishes papers in English in the broad fields of Geotechnical Engineering, Engineering Geology and Environmental Engineering. The Journal is published in April, August and December. The journal, with the name "Solos e Rochas", was first published in 1978 by the Graduate School of Engineering-Federal University of Rio de Janeiro (COPPE-UFRJ).
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