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Structural and geotechnical interpretation of strain gauge data from laterally loaded reinforced concrete piles

机译:横向荷载钢筋混凝土桩应变计数据的结构和岩土工程解释

摘要

Four instrumented sites, with a total of 14 instrumented piles, have been analysed to understand the structural behaviour of the piles and the geotechnical behaviour of the stabilised slopes. Vibrating wire strain gauges are used for the calculation of the bending moment applied to the piles, while inclinometers are used to measure the displacements. A review of the instrumentation has been carried out and a methodology for processin and analysing strain gauges data has been developed. Concrete is a material with a complex behaviour. Shrinkage, creep, cracking, temperature variations, strength and modulus of elasticity of concrete are critically analysed to understand their influence on the concrete pile behaviour and on the function of the strain gauges. The results show that creep and shrinkage effects can be neglected in underground reinforced concrete structures in saturated clay, while cracking effects and temperature variations have to be analysed case by case. A correction method has been developed to consider the difference between the coefficient of thermal expansion of the strain gauges and that of the concrete. Two types of pile have been analysed, standard reinforced concrete piles and circular concrete-filled steel tubular piles. A review of their behaviour in bending that considers the development of cracking is presented. Two methods for the calculation of bending moment in the piles have been developed taking into account realistic stress/strain curves and the effects of concrete cracking. The bending moment results are compared with the inclinometer profiles using an improved version of an existing curve fitting method. The comparison shows good agreement between the two instrument results. A critical analysis of the pile/soil behaviour has been carried out comparing the results from the instrumented sites with theoretical mechanisms for landslide stabilising piles presented elsewhere. The results show a good match with the theoretical mechanisms as well as showing that the slopes have been successfully stabilised. Other observations have been made during analysis of the monitoring data. These include the seasonal effects of climate and vegetation on stabilised slopes and the structural effect of the external grout ring in laterally loaded circular concrete-filled steel tubular piles
机译:为了分析桩的结构性状和稳定斜坡的岩土性状,已经分析了四个有仪器的场地,总共有14个仪器桩。振弦式应变仪用于计算施加在桩上的弯矩,而倾角仪用于测量位移。已经对仪器进行了审查,并且已经开发了用于处理和分析应变仪数据的方法。混凝土是一种行为复杂的材料。严格分析混凝土的收缩,蠕变,开裂,温度变化,强度和弹性模量,以了解它们对混凝土桩性能和应变仪功能的影响。结果表明,地下钢筋混凝土结构在饱和黏土中的蠕变和收缩效应可以忽略不计,而开裂效应和温度变化则需要逐个分析。已经开发出一种校正方法来考虑应变仪的热膨胀系数与混凝土的热膨胀系数之间的差异。分析了两种类型的桩,标准钢筋混凝土桩和圆形混凝土填充钢管桩。提出了一种考虑到裂纹发展的弯曲行为的综述。考虑到实际的应力/应变曲线和混凝土开裂的影响,开发了两种计算桩中弯矩的方法。使用现有曲线拟合方法的改进版本,将弯矩结果与测斜仪轮廓进行比较。比较显示两种仪器结果之间具有良好的一致性。已经对桩/土的行为进行了严格的分析,将仪器现场的结果与其他地方提出的滑坡稳定桩的理论机制进行了比较。结果表明与理论机理非常吻合,并且表明斜坡已成功稳定。在分析监测数据期间还进行了其他观察。其中包括气候和植被对稳定斜坡的季节性影响以及侧向荷载的圆形钢管混凝土桩中外部灌浆环的结构影响

著录项

  • 作者

    Biocchi Nicola;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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