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An Investigation of the Seismic Response of Earthen Levees with Cutoff Walls with a Focus on the Development of a High Performance Cutoff Wall Material.

机译:作者:郝建军,山西建筑sHaNXI aRCHITECTURE 2008年第12期以高效防渗墙材料开发为研究的防渗墙土墙地震反应研究。

摘要

In recent years, flood protection systems across the nation have undergone extensive investigation into their current state and adequacy regarding various potential hazards. These investigations have revealed that 1) many existing levees are vulnerable to excessive under- and through-seepage due to the insufficient state or length of their cutoff walls, and 2) seismic activity poses serious risks to many existing levees. Traditional cutoff walls (e.g. slurry-type walls and steel sheet pile walls) have a variety of shortcomings, particularly for levees in seismic regions. This project investigates the feasibility of using a new cutoff wall material that overcomes many of the shortcomings associated with traditional cutoff wall materials. The proposed cutoff wall material is from a family of high performance fiber-reinforced cementitious materials called Engineered Cementitious Composites (ECC). ECC possesses several characteristics that make it ideal for use as a cutoff wall material in seismic regions, including high tensile ductility and small crack width, among others. The initial portion of this study focuses on characterizing the dynamic response of levees with conventional cutoff walls. Two sets of parametric analyses are conducted to investigate how the presence of a cutoff wall affects the dynamic response of a levee and what type of demands are placed on the cutoff wall during the seismic event. One set of analyses is conducted for levees founded on non-liquefiable soils and the other is for levees founded on liquefiable soils. In collaboration with materials science researchers, an ECC material is then tailored for use in the construction of levee cutoff walls. The results of materials testing on the resulting candidate mix design are then used as input in further numerical modeling, in which the dynamic response of levees with ECC cutoff walls is investigated. These analyses are used to assess the feasibility of the candidate mix design.Conclusions regarding the feasibility of using such a material for levee cutoff walls are presented, with recommendations for a candidate ECC mix. Also, revisions to existing levee seismic design guidelines are proposed, based on the results of the parametric analyses of the dynamic response of levees with conventional cutoff walls
机译:近年来,全国各地的防洪系统已对其各种状况和各种潜在危害的充分性进行了广泛的调查。这些调查表明,1)许多现有堤防由于其防渗墙的状态或长度不足而容易发生过多的渗漏和渗漏; 2)地震活动对许多现有堤防构成了严重的风险。传统的隔断墙(例如泥浆型墙和钢板桩墙)有很多缺点,特别是对于地震地区的堤防。该项目研究了使用新型隔断墙材料的可行性,该材料克服了与传统隔断墙材料相关的许多缺点。拟议的隔墙材料来自高性能纤维增强水泥材料系列,称为工程水泥复合材料(ECC)。 ECC具有几个特性,使其特别适合在地震区域用作防渗墙材料,包括高拉伸延展性和小裂缝宽度。这项研究的初始部分着重于表征具有传统防渗墙的堤防的动态响应。进行了两组参数分析,以研究防渗墙的存在如何影响堤坝的动力响应,以及在地震事件中对防渗墙提出什么样的要求。一组分析是针对建立在非液化土壤上的堤坝,另一组是针对建立在可液化土壤上的堤坝。然后,与材料科学研究员合作,对ECC材料进行量身定制,以用于建造防洪堤防渗墙。然后,将对最终候选混合料设计进行材料测试的结果用作进一步数值建模的输入,在该数值模型中,研究了带有ECC防渗墙的堤坝的动态响应。这些分析用于评估候选混合物设计的可行性。提出了有关将这种材料用于防洪堤防渗墙的可行性的结论,并提供了有关候选ECC混合物的建议。此外,基于对具有传统防渗墙的堤防动力响应的参数分析结果,提出了对现有堤防地震设计准则的修订建议。

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    Lobbestael Adam J.;

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