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Pile setup and axial capacity gain for driven piles installed using impact hammer versus vibratory system

机译:使用冲击锤和振动系统安装的打入桩的桩身设置和轴向承载力增加

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Due to the presence of soft saturated cohesive soils in New Orleans and vicinity, most civil engineering structures are supported on deep foundations, consisting of timber piles, precast concrete piles, open or closed end pipe piles, or steel H-piles. The piles at a project site derive their load carrying capacity from (a) "skin friction" along their embedded lengths and (b) "end bearing" when tipped firmly into dense sand or stiff clays. The piles are generally driven in the ground using pile-driving rigs equipped with (a) impact hammer or (b) vibratory equipment. Impact hammers drive the pile by inducing impact on the pile with a falling ram which moves the pile incrementally into the ground. Conversely, a vibratory system installs pile into the ground by applying a rapidly alternating force to the pile using rotating eccentric weights. Impact hammers produce vibration to the ground which can be detrimental to a nearby structure. Consequently, vibratory system has gained popularity in installing large number of pile types. However, the long term effects of vibratory system on soil-pile interaction and pile setup is not properly understood. The main objectives of this research study were to evaluate the set-up phenomenon for four different steel piles driven in soft clay formation in southeast Louisiana using impact hammer and vibratory pile driving system. This paper presents the results of several dynamic load tests performed on these piles over a period of several weeks and summarizes the effects of installation procedure on pile capacity gain.
机译:由于在新奥尔良及其附近地区存在柔软的饱和粘性土壤,因此大多数土木工程结构都支撑在较深的基础上,这些基础包括木桩,预制混凝土桩,开放式或封闭式端管桩或H型钢桩。在项目现场,桩的承载能力来自(a)沿其嵌入长度的“皮肤摩擦”和(b)牢固地倾倒在稠密的沙子或硬质粘土中时的“端承”。通常使用配备有(a)冲击锤或(b)振动设备的打桩钻机将桩打入地下。冲击锤通过下落的撞锤在桩上产生冲击,从而驱动桩,桩逐渐向地面移动。相反,振动系统通过使用旋转的偏心重物对桩施加快速交变的力,从而将桩安装到地面中。冲击锤会在地面产生振动,这可能会对附近的结构造成不利影响。因此,振动系统已在安装大量桩类型中获得普及。但是,振动系统对桩-土相互作用和桩身设置的长期影响尚不完全清楚。这项研究的主要目的是评估使用冲击锤和振动桩打入系统在路易斯安那州东南部软黏土地层中打入的四种不同钢桩的立桩现象。本文介绍了在数周内对这些桩进行的几次动态载荷测试的结果,并总结了安装程序对桩容量增加的影响。

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