Rigidly Framed Earth Retaining Structures: Thermal soil structure interaction of buildings supporting unbalanced lateral earth pressures (Springer Series in Geomechanics and Geoengineering)
暫譯: 剛性框架土壤擋土結構:支撐不平衡側向土壓的建築物的熱土壤結構互動(斯普林格地質力學與地質工程系列)

Walid Aboumoussa, Magued Iskander

  • 出版商: Springer
  • 出版日期: 2014-07-07
  • 售價: $8,090
  • 貴賓價: 9.5$7,686
  • 語言: 英文
  • 頁數: 318
  • 裝訂: Hardcover
  • ISBN: 3642546420
  • ISBN-13: 9783642546426
  • 海外代購書籍(需單獨結帳)

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商品描述

Structures placed on hillsides often present a number of challenges and a limited number of economical choices for site design. An option sometimes employed is to use the building frame as a retaining element, comprising a Rigidly Framed Earth Retaining Structure (RFERS). The relationship between temperature and earth pressure acting on RFERS, is explored in this monograph through a 4.5 year monitoring program of a heavily instrumented in service structure. The data indicated that the coefficient of earth pressure behind the monitored RFERS had a strong linear correlation with temperature. The study also revealed that thermal cycles, rather than lateral earth pressure, were the cause of failure in many structural elements.

The book demonstrates that depending on the relative stiffness of the retained soil mass and that of the structural frame, the developed lateral earth pressure, during thermal expansion, can reach magnitudes several times larger than those determined using classical earth pressure theories. Additionally, a nearly perpetual lateral displacement away from the retained soil mass may occur at the free end of the RFERS leading to unacceptable serviceability problems. These results suggest that reinforced concrete structures designed for the flexural stresses imposed by the backfill soil will be inadequately reinforced to resist stresses produced during the expansion cycles.

Parametric studies of single and multi-story RFERS with varying geometries and properties are also presented to investigate the effects of structural stiffness on the displacement of RFERS and the lateral earth pressure developed in the soil mass. These studies can aid the reader in selecting appropriate values of lateral earth pressure for the design of RFERS. Finally, simplified closed form equations that can be used to predict the lateral drift of RFERS are presented.

KEY WORDS: Earth Pressure; Soil-Structure Interaction; Mechanics; Failure; Distress; Temperature; Thermal Effects; Concrete; Coefficient of Thermal Expansion; Segmental Bridges; Jointless Bridges; Integral Bridges; Geotechnical Instrumentation; Finite Element Modeling; FEM; Numerical Modeling.

商品描述(中文翻譯)

結構物放置在山坡上常常會面臨許多挑戰,並且在場地設計上選擇有限。有時候採用的一種選擇是將建築框架作為擋土元素,這種結構稱為剛性框架擋土結構(Rigidly Framed Earth Retaining Structure, RFERS)。本專著通過對一個重度儀器化的在役結構進行為期4.5年的監測計畫,探討了作用於RFERS的溫度與土壓之間的關係。數據顯示,監測的RFERS後方的土壓係數與溫度之間存在強線性相關性。研究還揭示,熱循環而非側向土壓是許多結構元素失效的原因。

本書展示了根據保留土體的相對剛度與結構框架的剛度,在熱膨脹過程中所產生的側向土壓可以達到比使用經典土壓理論所確定的數值大幾倍的程度。此外,RFERS的自由端可能會出現幾乎持續的側向位移,這會導致不可接受的使用性問題。這些結果表明,為了抵抗回填土所施加的彎曲應力而設計的鋼筋混凝土結構,對於在膨脹循環中產生的應力將不足以提供適當的加固。

本書還介紹了不同幾何形狀和性質的單層和多層RFERS的參數研究,以調查結構剛度對RFERS位移和土體中發展的側向土壓的影響。這些研究可以幫助讀者選擇RFERS設計中適當的側向土壓值。最後,還提供了可以用來預測RFERS側向漂移的簡化封閉形式方程。

關鍵詞:土壓;土壤-結構相互作用;力學;失效;損傷;溫度;熱效應;混凝土;熱膨脹係數;分段橋;無接縫橋;整體橋;岩土儀器;有限元素建模;FEM;數值建模。