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Protection of Steel Sheet Pile Bulkhead Using Precast Concrete Veneer

机译:预制混凝土薄板对钢板桩隔板的保护

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摘要

An industrial yard owned by the United States Army Corps of Engineers (USACE) is located at the Caven Point peninsula in Jersey City, New Jersey. The yard’s berthing waterfront is built in the form of steel a sheet pile bulkhead. The sheet piling, subject to the aggressive salt water environment, has severely corroded since the time of construction in the early 1970s; however, the degree of corrosion of the steel sheeting varied a great deal over the wall height. The most severe corrosion occurred within the tidal zone with its peak being at the Mean Low Water level (MLW). About 15% of the original steel thickness was left at this level. In other zones, where the sheet piling was either permanently dry or permanently submerged, the remaining steel was 80 to 90% of its original thickness. rn Structural analysis of the bulkhead showed that the maximum bending moment occurs approximately at the level of mudline, where the section loss of the sheet piling due to corrosion was minimal. At the MLW level, where the sheet piling sustained the maximum corrosion loss, the bending moment, on the contrary, was small and the remaining steel thickness was found sufficient to resist it. Consequently, it was determined that the bulkhead in its existing condition was structurally adequate; hence, the goal of its rehabilitation was merely to stop further corrosion and to preserve the sheet piling in its present condition. rn Protection of the sheet piling has been designed as 20-cm (8-inch) thick precast concrete panels (veneer) installed in front of the existing wall. The space between the sheet piling and the panels would be filled with plain tremie concrete. To make the concrete panels capable of withstanding the lateral pressure of the wet concrete fill, two measures have been proposed: a) use of the lightweight concrete fill, and b) placement of the concrete fill between the sheet piling and panels in several lifts. Each subsequent lift would be placed after concrete in the previous lift has hardened and thus no longer transmits lateral pressure to the panels.
机译:美国陆军工程兵团(USACE)拥有的工业场位于新泽西州泽西市的Caven Point半岛。院子里的停泊处滨水区以钢板桩板隔板的形式建造。自从1970年代初期开始施工以来,在恶劣的盐水环境下,板桩已经严重腐蚀;然而,钢板的腐蚀程度在壁高上变化很大。最严重的腐蚀发生在潮汐带内,其峰值在平均低水位(MLW)处。在此水平下,大约保留了原始钢厚度的15%。在其他区域,如果钢板桩永久干燥或永久浸没,则剩余的钢量为其原始厚度的80%至90%。对舱壁的结构分析表明,最大弯矩大约发生在泥线处,其中因腐蚀而导致的板桩断面损失最小。相反,在MLW级别上,板桩承受最大的腐蚀损失,而弯矩很小,并且发现剩余的钢厚度足以抵抗它。因此,可以确定在现有条件下的舱壁在结构上是足够的;因此,其修复的目的仅仅是停止进一步的腐蚀并保持板桩处于当前状态。 rn板桩的保护设计为在现有墙的前面安装20厘米(8英寸)厚的预制混凝土面板(墙板)。板桩和面板之间的空间将填充普通的特雷米混凝土。为了使混凝土板能够承受湿混凝土填充物的侧向压力,提出了两种措施:a)使用轻质混凝土填充物,以及b)在多个升降机中将混凝土填充物放置在板桩和板之间。每个后续升降机将放置在前一个升降机中的混凝土硬化后放置,因此不再将侧向压力传递给面板。

著录项

  • 来源
  • 会议地点 Houston TX(US);Houston TX(US)
  • 作者

    Alex Matlin; Valery Gelfer;

  • 作者单位

    PB Ports Marine, Inc., One Penn Plaza, New York, NY 10119 Tel. (212) 465-5226, Fax (212) 465-5753, Email matlin@pbworld.com;

    PB Ports Marine, Inc., 11757 Katy Freeway, Houston, TX 77079, Tel. (281) 589-5916, Fax (281) 759-5164, Email gelfer@pbworld.com;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 港口工程;
  • 关键词

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