落锤多重冲击打桩模型

A. Dubinsky
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引用次数: 0

摘要

打桩计算在施工中起着重要的作用。因此,相应的过程由规范性文件控制,包括必要的公式,并附有许多表格和图表,允许在特定的施工条件下使用技术。这些应用方法的基础是力学研究的结果;这些研究的结果在文献中得到了广泛的介绍。本文就是在这样的研究框架内进行的。本文提出了一种基于对决定打桩过程的参数实值进行评估的近似方法。提出的方法可以得到一个近似的公式来计算自由下落锤的连续打击下桩在土中的运动。下面概述了在这种方法中分析和改进模型的方法:(1)通过使用其他模型的实验和计算结果以及规范性工具的建议来分析所提出模型的准确性;(2)将模型推广到土壤的力学特性随浸没深度而变化的情况。
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A MODEL OF PILE DRIVING BY MULTIPLE IMPACTS OF FALLING HAMMER
Calculations related to pile driving play an important role in construction. Therefore, corresponding processes are controlled by regulatory documents, including the necessary formulas, which are accompanied by numerous tables and graphs, allowing the use of techniques in specific conditions of construction. The basis of such applied methods are the results of research in mechanics; the results of such studies are widely presented in the literature. This article is made within the framework of such studies. The article presents an approximate approach based on the evaluation of the real values of the parameters that determine the process of driving the pile. The proposed approach allowed to obtain an approximate formula to calculate the motion of the pile in soil by successive blows of the hammer falling freely. The following ways to analyze and improve models within this approach are outlined: (1) analysis of the accuracy of the proposed model by its presentation with the results of experiments and calculations using other models as well as with recommendations of normative instruments; (2) generalization of the model for the case when the mechanical properties of the soil vary depending on the depth of immersion into the soil.
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DYNAMICS OF POROVISCOELASTIC PRISMATIC SOLID FOR VARIOUS VALUES OF MATERIAL PERMEABILITY ACTIVE DAMPING OF TRANSVERSE VIBRATIONS OF CONSOLE BEAM BY PIEZOELECTRIC LAYER WITH DIFFERENT ELECTRODE SHAPES OF DAMAGED MEDIA A MATHEMATICAL MODEL OF NONSTATIONARY MOTION OF A VISCOELASTIC FLUID IN ROLLER BEARINGS DYNAMIC TESTS OF FROZEN SAND SOILS NON-MONOTONICITY, SIGN CHANGES AND OTHER FEATURES OF POISSON'S RATIO EVOLUTION FOR ISOTROPIC LINEAR VISCOELASTIC MATERIALS UNDER TENSION AT CONSTANT STRESS RATES
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