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Tension Tests on Driven Fin Piles for Support of Solar Panel Arrays

机译:用于支撑太阳能电池板阵列的驱动鳍桩的张力试验

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Foundations for small solar installations can have a variety of forms, including cast-in-place concrete, precast concrete, driven piles, and helical screw-piles. A small installation of 70 solar panels was developed to supply power to the Agricultural Experiment Station at the University of Massachusetts. The contractor elected to install driven pipe piles to support the elevated solar panels, however, some questions arose as to the uplift capacity of the piles. In order to resolve the issues, a series of tension tests were performed at the site. In this paper results of tension tests on driven fin piles proposed to support the solar panel arrays are presented. The piles consisted of steel open pipe piles with four fins welded onto the outside to increase the uplift resistance. Three different diameter piles were installed and tested. All piles were driven to a depth of 8 ft. Tests were performed on plain pipe piles without fins and on piles with different configurations of fins in order to provide a comparison of any improvement in tension behavior provided by the fins. The site consisted of an alluvial sandy silt deposit. The results of the site investigation and the pile load tests are presented.
机译:小型太阳能装置的基础可以具有各种形式,包括铸造混凝土,预制混凝土,驱动的桩和螺旋螺钉。开发了70个太阳能电池板的小安装,为马萨诸塞州大学农业实验站提供电力。 The contractor elected to install driven pipe piles to support the elevated solar panels, however, some questions arose as to the uplift capacity of the piles.为了解决问题,在网站上进行了一系列张力测试。在本文中,提出了提出支持太阳能电池板阵列的从动翅片桩上的张力试验。该桩由钢开路管桩组成,焊接四个翅片焊接到外部以增加隆起的电阻。安装并测试了三个不同的直径桩。所有桩被驱动到8英尺的深度。在普通管桩上进行测试,没有翅片和具有不同翅片配置的桩的桩,以便提供鳍片提供的张力行为的任何改善的比较。该网站由冲积沙淤泥矿床组成。介绍了现场调查的结果和桩载试验。

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