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THE APPLICATION OF PHENOMENOLOGICAL METHODOLOGY FOR DESIGNING PILE FOUNDATION IN PORT STRUCTURES

机译:现象学方法在港口结构桩基设计中的应用

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摘要

It is of utmost importance in the design process that a suitable, safe and concurrently economic solution be chosen. Issues connected with foundations require adopting a special approach. Soil is a composite medium, and it is essential to describe as precisely as possible the interaction taking place between the subgrade and the structure. There are many design methods of pile foundation that are based on in-situ test of soils. As a result of incessant development of the pile installation technology, the results obtained with design methods used to date do not assure the required accuracy, and consequently the values of pile load capacity are not sufficiently accurate. A partial solution to this problem may be applying the observation method. Based on assumptions of phenomenology as a science that enable cognition of natural and mathematical phenomena, a procedure has been developed for projecting loading-settlement dependencies for Vibro piles installed in port areas in Poland. Those areas are characterised by similar soil and water conditions, as well as soil genesis and parameters. This procedure enables estimating the limit of load capacity values with much better accuracy than the hitherto used direct methods. The full range of the s(Q) function also enables the possibility of designing structures allowing for stringent criteria of admissible settlements having a specified value.
机译:在设计过程中,选择合适,安全且同时经济的解决方案至关重要。与基金会有关的问题需要采用特殊的方法。土壤是一种复合介质,因此必须尽可能准确地描述路基与结构之间的相互作用。基于土壤的现场测试的桩基设计方法很多。由于桩安装技术的不断发展,用迄今为止使用的设计方法获得的结果不能保证所要求的精度,因此桩的承载力值不够准确。该问题的部分解决方案可能是应用观察方法。基于现象学作为一门能够认识自然现象和数学现象的科学的假设,已开发出一种程序来预测安装在波兰港口区域中的Vibro桩的荷载-沉降依存关系。这些地区的特点是土壤和水的条件相似,以及土壤的成因和参数。与迄今使用的直接方法相比,此过程能够以更高的精度估算负载能力值的极限。 s(Q)函数的全部范围也使设计结构的可能性成为可能,该结构允许对具有指定值的可容许沉降进行严格的标准。

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