地温升高对用于深层岩石灌浆的水泥灌浆料性能的影响

Zhipeng Xu, Jianping Sun, Runguo Li, Lei He, Changwu Liu
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摘要

适当确定水泥灌浆料的混合比对于岩石灌浆的质量和降低地下水流入的风险至关重要。灌浆料的行为通常与温度高度相关,很可能会受到深层岩体中地温升高的影响。本文旨在通过实验了解在深层岩石灌浆中,地温升高对水泥灌浆料在新鲜和硬化状态下性能的影响。结果表明,35°C 的温度对水灰比小于 0.8 的厚水泥灌浆料性能的变化至关重要。当温度达到 35°C 时,稠水泥灌浆料的流变参数会有明显改善,灌浆料凝结速度加快,流变时间相关性增加;但对灌浆料的初始流动性和剪切变稀的性质也会有轻微影响。高温仍可改善新鲜水泥灌浆料的稳定性,并显著改善硬化水泥灌浆料的孔隙率和蠕变变形。所提出的构成模型将 Burgers 模型与基于分数导数的 Abel dashpot 系列耦合在一起,可用于适当表征硬化水泥灌浆料的蠕变行为。本文为水泥灌浆料混合物的优化设计提供了有价值的参考,从而提高了深层岩石灌浆的质量和安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of elevated ground temperatures on properties of cement grouts for deep rock grouting
Appropriate determination of the mix ratios of cement grouts is of vital importance to the quality of rock grouting and the risk reduction of groundwater inflow. The behavior of grout, often highly temperature dependent, is likely to be affected by the elevated ground temperature in deep rock masses. This paper aims to experimentally gain insights into the effects of elevated ground temperatures on the properties of cement grout in fresh and hardened states in deep rock grouting. The results revealed that a temperature of 35°C is crucial for changes in the properties of thick cement grout with a water–cement ratio of less than 0.8. When the temperature is up to 35°C, there can be significant improvements in rheological parameters, acceleration of grout setting, and increase in the rheological time dependence of thick cement grout; however, there may also be a slight impact on the initial grout flowability and the nature of shear thinning. The high temperature may still improve the stability of fresh cement grout and also improve the porosity and creep deformation of hardened cement grout considerably. The proposed constitutive model that couples the Burgers model with a fractional derivative‐based Abel dashpot in the series can be used to characterize the creep behavior of hardened cement grout appropriately. The paper provides a valuable reference for optimization of mixture design of cement grouts, thus enhancing deep rock grouting quality and improving safety.
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