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An experimental examination of foam stability under pressure for EPB TBM tunneling

机译:EPB TBM隧道压力下泡沫稳定性的实验研究

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Foam as a soil conditioning agent has been extensively employed in earth pressure balanced (EPB) tunnel boring machines (TBM) to change the mechanical and hydraulic properties of soils for effective excavation. Foam stability is a critical parameter that influences the performance of foam and foam-conditioned soils. This paper examines foam stability under pressure through a novel foam generation - pressure chamber - foam capture testing system. A comprehensive suite of foam experiments was performed to examine the physical phenomenon of foam degradation and time-dependent foam properties under pressure. Testing results suggest that foam liquid loss is not an effective indicator for characterizing foam stability, while foam volume loss is a more appropriate measure of foam stability. Results also reveal that foam liquid drainage is significantly retarded at higher chamber pressure because foam bubbles are smaller and more uniform. Bubble size was not appreciably different in dry and wet foams.
机译:泡沫作为土壤改良剂已广泛应用于土压力平衡(EPB)隧道掘进机(TBM)中,以改变土壤的机械和水力性质,以进行有效的开挖。泡沫稳定性是影响泡沫和泡沫改良土壤性能的关键参数。本文通过一种新型的泡沫生成-压力室-泡沫捕获测试系统,研究了压力下的泡沫稳定性。进行了一套全面的泡沫实验,以检查在压力下泡沫降解的物理现象和随时间变化的泡沫特性。测试结果表明,泡沫液体损失不是表征泡沫稳定性的有效指标,而泡沫体积损失是泡沫稳定性的更合适度量。结果还表明,在较高的腔室压力下,泡沫液体的排出明显受阻,因为泡沫气泡更小且更均匀。在干泡沫和湿泡沫中,气泡大小没有明显差异。

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