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Design of fly ash dyke for seepage and stability analysis

机译:粉煤灰堤防渗流及稳定性分析的设计

摘要

In India, due to progressively increase in number and capacity of coal based thermal power plant huge amount of fly ash is generated. In current scenario only 40-50% fly ash are used and rest of the fly ash is disposed of and restored in ash pond with dyke to reduce the land wastage. The failure rate of ash dykes are much higher than that of dams because seepage analysis is not taken into account while design of the former. So, construction of safe ash dyke becomes a top priority for engineers as its occasional failure creates havoc in safety of surrounding people. It causes economic losses as well as environmental and water pollution which is dangerous for both human and aquatic life. There is no well-defined design procedure and codal provision for design and maintenance of fly ash dam in India. This project describes about the design of ash dyke in various stages constructed in various methods with the help of finite element package PLAXIS considering various parameters representing varied environmental conditions. A laboratory model has been developed and it is found that the phreatic line is fairly matching with our numerical analysis result. Due to limited time, practical model variation could but made but numerical analysis are made for different heights of water at top of fill side, different rates of rapid drawdown, providing different width of vertical sand drains. The steady seepage analysis is done using PLAXFLOW module of PLAXIS and it is found that factor of safety is less compared to that of dry condition. Based on laboratory investigation it was observed that fly ash is dispersible. Further phreatic line does not remain within body of dyke when sand drains and toe filters are not provided, which may lead to its leakage. Then by using vertical sand filters of varying widths, dykes are analyzed and the one having minimum deformation is chosen.
机译:在印度,由于煤炭火力发电厂的数量和容量的逐步增加,产生了大量的粉煤灰。在目前的情况下,仅使用40%至50%的粉煤灰,其余的粉煤灰则通过堤坝进行处理并在灰池中进行回收,以减少土地浪费。灰岩堤坝的破坏率比大坝高得多,因为在设计堤坝时没有考虑渗流分析。因此,建设安全的烟灰堤成为工程师的重中之重,因为它的偶然性故障会给周围人员的安全造成严重破坏。它造成了经济损失以及环境和水污染,这对人类和水生生物都是危险的。在印度,没有设计和维护粉煤灰坝的设计和维护程序。该项目描述了在有限元程序包PLAXIS的帮助下,以各种方法构造的各个阶段的烟灰堤设计,其中考虑了代表各种环境条件的各种参数。已经开发了实验室模型,发现潜水线与我们的数值分析结果相当匹配。由于时间有限,可以进行实际的模型修改,但是对填充侧顶部不同高度的水,不同的快速降水速度,提供不同宽度的垂直排沙口进行了数值分析。使用PLAXIS的PLAXFLOW模块进行了稳定的渗流分析,发现与干燥条件相比,安全系数较小。根据实验室研究,观察到粉煤灰是可分散的。如果未设置排沙管和脚趾过滤器,则潜水管不会残留在堤体内,这可能导致其泄漏。然后通过使用不同宽度的垂直砂滤池,分析堤坝,并选择变形最小的堤坝。

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