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Geotechnical Properties and Diagenesis of Ponded Fly Ash

机译:粉煤灰的岩土性质及成岩作用

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Ponded fly ash is a unique sediment, exhibiting distinct particle and bulk-scale characteristics compared to natural sediments. A recently completed EPRI-funded laboratory study focused on assessing the fundamental geotechnical engineering properties of fly ash and its behavior in ash disposal ponds. For this study, samples of ponded and dry fly ash were obtained from several electric utilities and subjected to extensive characterization. Laboratory test results help discern the distinguishing physical and chemical characteristics of ponded fly ash, and lead to the identification of potential pitfalls in using standard geotechnical correlations and analyses. Importantly, short-term aging is observed in some fly ash specimens. This early diagenesis is readily detected by shear wave velocity and has a marked effect on self-weight consolidation, which alters the contractive/dilative tendency of fly ash subjected to shear. In most cases, "water pluviated and immediately loaded" fly ash specimens tend to dilate upon shear at low to moderate confining stresses anticipated in ponds of moderate depth. These tendencies are contrary to those of materials prone to static liquefaction, a phenomenon that has been attributed to ponded fly ash. Results from this testing program help guide the design of proper field characterization studies and are relevant to the selection of strategies for "closing" existing fly ash ponds. This paper and presentation will examine the mechanism of diagenesis of these materials and the significant effects of diagenesis on the engineering performance of materials in fly ash ponds.
机译:池塘粉煤灰是一种独特的沉积物,与天然沉积物相比,具有独特的颗粒和体积尺度特征。最近完成的由EPRI资助的实验室研究重点在于评估粉煤灰的基本岩土工程特性及其在灰渣处理池中的行为。对于本研究,从几家电力公司获得了粉煤灰和干粉煤灰的样品,并对其进行了广泛的表征。实验室测试结果有助于分辨粉煤灰的物理和化学特性,并使用标准的岩土工程相关性和分析结果来识别潜在的陷阱。重要的是,在一些粉煤灰标本中观察到了短期老化。这种早期的成岩作用很容易被剪切波速度检测到,并且对自重固结有显着影响,这改变了粉煤灰在剪切作用下的收缩/膨胀趋势。在大多数情况下,在中等深度的池塘中,在“低到中等”的限制应力下,“被水淹没并立即加载的”粉煤灰试样在剪切时往往会膨胀。这些趋势与易于发生液化的材料相反,这种现象会归因于粉煤灰积聚。该测试程序的结果有助于指导适当的田间特性研究的设计,并且与“关闭”现有粉煤灰池的策略选择有关。本文和演示文稿将研究这些材料的成岩机理,以及成岩作用对粉煤灰池中材料的工程性能的重大影响。

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