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Site control procedures for applicability and quality of Rapid Impulse Compaction

机译:快速脉冲压实的适用性和质量的现场控制程序

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Rapid development of foundation engineering and substrate improvement technologies and also availability of various enforcement techniques make that dynamic or vibration-related technologies are used in such accomplishments. They are distinguished with numerous advantages like fast execution and large bearing capacities resulting from good compaction or additional compaction of natural soils during executing the work. Among such technologies most often used are, inter alia, stone columns, impulse compaction, dynamic replacement and, finally, micro-explosions. These technologies feature however some drawbacks like noise and vibrations. Noise is definitely more arduous for people. Although it is not more intense than that of standard work on construction site, but periodicity of noise source (e.g. vibrator, pile-driver) is oppressive for outsiders. Vibrations are generally better tolerated than noise. However, the influence of work exerted on neighbouring facilities should be under control. Accelerometers, which measure acceleration of structure elements caused by dynamic influences from working machinery, are used for this purpose. Another problem is the quality control of the work progressed. The paper provides both exemplary measurement equipment for vibration control and control procedures assessing efficiency of substrate improvement process.
机译:基础工程和基底改进技术的快速发展以及各种实施技术的可用性使得动态或振动相关技术可用于此类成就。它们具有众多优点,例如执行速度快,承重能力强,或者在执行工作时对天然土壤进行了很好的压实或额外压实。在这类技术中,最常用的是石柱,脉冲压实,动态置换以及最后是微爆炸。但是,这些技术具有一些缺点,例如噪音和振动。噪音对于人们而言绝对更加艰巨。尽管它不比建筑工地上的标准工作强度大,但是噪声源(例如,振动器,打桩机)的周期性对外界不利。通常,振动比噪音更容易忍受。但是,工作对邻近设施的影响应得到控制。为此目的,使用加速度计来测量由于工作机械的动态影响而引起的结构元件的加速度。另一个问题是所进行工作的质量控制。本文提供了用于振动控制的示例性测量设备和评估基材改进工艺效率的控制程序。

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