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Investigation on in situ test and measurement technique of groundwater level in vacuum preloading

机译:真空预压地下水位原位测试技术研究

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摘要

Groundwater level (GWL) plays a significant role in theoretical studying of vacuum preloading. The evolution pattern of GWL under the negative pressure condition, however, is still not well understood, and conflicting views continue to be disseminated as a result of insufficient measurement technologies. In this paper, the conventional method, Zhang's method, and the newly proposed floating ball method (FBM) were employed in the vacuum preloading process for reclaimed land to gain critical insight into the GWL change characteristics according to the in situ distinguishing performances exhibited by the three techniques. Testing results show that the FBM exhibits the best measurement performance; linear decline of mean GWL is reasonably predicted according to the water level change in the pipe during vacuum preloading in this field test. The preconditions and influencing factors of GWL testing in vacuum preloading are elucidated. Local GWL waveform distributions around the water pipe, mainly caused by both the airtight effect and the vertical lifting effect, are highlighted, which can make the water level in the pipe and the average GWL changes out of sync under negative pressure condition. A possible improvement of the GWL measurement is also proposed based on the advantages and disadvantages of the current methods.
机译:地下水位(GWL)在真空预压的理论研究中起着重要作用。然而,在负压条件下,GWL的演化模式仍未得到很好的理解,由于测量技术不足,冲突的观点继续散播。本文在填海土地的真空预压过程中,采用了传统方法,张氏方法和新提出的浮球法(FBM),以便根据填埋场表现出的原位识别性能对GWL的变化特征进行批判性的了解。三种技术。测试结果表明,FBM具有最佳的测量性能。根据该现场测试中真空预加载期间管道中水位的变化,可以合理预测平均GWL的线性下降。阐明了真空预压中GWL测试的前提条件和影响因素。高亮显示了水管周围的局部GWL波形分布,这主要是由气密效应和垂直提升效应共同引起的,这会使水管中的水位和平均GWL在负压条件下变化不同步。基于当前方法的优缺点,还提出了GWL测量的可能改进。

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