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Subsoil strengthening by using jet-grouting technology

机译:使用喷射灌浆技术加固地基

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The weak subsoil conditions like an anthropogenic, organic and cohesive soil, contribute to the application of subsoil strengthening. One of the most popular technology of subsoil strengthening is jet-grouting. Jet-grouting process consists in high-pressure injection of an inject (the cement grout usually) stream to the soil massif. The stream cuts and crushes the soil structure. Performance is started by an insert of drilling rods with high-pressure nozzle at the end, in a subsoil at expected depths. During pulling the rod, the inject is flowing from the nozzle under a high pressure. Soil and cement particles fill space in the range of erosion stream, creating the binding rigid block, called soilcrete. The blocks may be shaped into eg. columns. The main motivation of my research project is preparing the explanation of interaction between jet-grouting columns and subsoil. It can be useful for designers to optimizing the procedure of dimensioning columns. The key goal is preparing the numerical model, which can be useful to illustrate the real conditions of subsoil strengthening by using jet-grouting columns. The computational model describes the interaction between group of jet-grouting columns and soil. Presented model will reflect the essence of jet-grouting technology, and after checking the results with in situ tests it will be also used to verify engineering methods of dimensioning columns. The main element of this analysis is selection and calibration of computational model of the "group of jet-grouting columns - subsoil" interaction. The starting point for creating a model is the concept of dividing the model into three zones: jet-grouting columns, subsoil and the contact layer, formed between the columns and the soil massif.
机译:诸如人为的,有机的和粘性的土壤等较弱的地下土壤条件有助于应用地下土壤加固。地下灌浆最流行的技术之一是喷射灌浆。喷射注浆工艺包括将注浆(通常为水泥浆)流高压注入土壤块体。溪流切割并压碎了土壤结构。通过在末端深有预期深度的地基中插入一个带有高压喷嘴的钻杆开始性能。在拉动杆的过程中,注射液在高压下从喷嘴流出。土壤和水泥颗粒会在侵蚀流的范围内填充空间,从而形成粘结的刚性块,称为土壤混凝土。块可以成形为例如。列。我的研究项目的主要动机是准备解释注浆柱与地基之间相互作用的方法。对于设计人员优化列尺寸标注的过程可能很有用。关键目标是准备数值模型,该模型可用于说明使用喷射灌浆柱加固地基的真实条件。该计算模型描述了喷射桩组与土壤之间的相互作用。提出的模型将反映喷射注浆技术的本质,并且在通过原位测试检查结果之后,还将用于验证立柱尺寸的工程方法。此分析的主要元素是“注浆柱组-底土”相互作用的计算模型的选择和校准。创建模型的起点是将模型分为三个区域的概念:喷射注浆柱,地基土和在柱与土壤块之间形成的接触层。

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