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Critical Pavement Response Analysis of Pond Ash Stabilized Subgrade Using Non-linear Approach

机译:用非线性方法分析粉煤灰稳定路基的临界路面响应

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Design of flexible pavements incorporates mechanistic empirical approach pertaining to limiting stresses and strains at critical locations. In order to properly characterize the resilient behaviour of pavement foundations, non-linear stress dependent modulus models need to be incorporated in the analysis. The study conducted here focuses on employing non linear behaviour of subgrade in KENLAYER software for mechanistic pavement analysis. Road network being a major and preferential communication system draws attention towards an urgent need for sustainable construction of new roads. Pond ash produced by coal based thermal power plants takes huge disposal area and creates environmental problems like leaching and dusting. The present study investigates the effect of non-linearity on clayey subgrade stabilized with pond ash. Geotechnical studies were conducted by blending pond ash with 10%, 20%, 30% and 40% by mass of soil. The improvement in the characteristics of stabilized soils was assessed by evaluating the changes in the physical and strength parameters namely, the California Bearing Ratio (CBR) and compaction parameters. Significant improvement in geotechnical properties was observed leading to remarkable reduction in pavement thicknesses. It was observed that the assumption of linearity in the material behaviour gives a conservative design approach in terms of critical failure due to passes and critical strains. The critical pavement response reported with pond ash stabilization shows considerable improvement in increasing the rutting and fatigue life of pavement. At low CBR percentages, the critical strains were found to be high emphasizing the fact that benefit of pond ash stabilization will be prominent.
机译:柔性人行道的设计结合了机械经验方法,可用于限制关键位置的应力和应变。为了正确地表征路面基础的弹性特性,需要在分析中纳入非线性应力相关的模量模型。此处进行的研究着重于利用KENLAYER软件中路基的非线性行为进行机械路面分析。公路网是主要的优先通讯系统,引起了对可持续建设新公路的迫切需求。燃煤火力发电厂产生的粉煤灰占据了巨大的处置面积,并产生了诸如沥滤和扬尘之类的环境问题。本研究研究了非线性对池塘灰稳定的黏土路基的影响。通过将池塘灰分与10%,20%,30%和40%的土壤混合来进行岩土工程研究。通过评估物理和强度参数(即加利福尼亚承载比(CBR)和压实参数)的变化,评估了稳定土壤的特性。观察到岩土性能的显着改善,导致路面厚度显着减小。据观察,材料行为线性的假设就由于道次和临界应变而导致的临界破坏而言,提供了一种保守的设计方法。池塘灰稳定的关键路面响应显示出在增加车辙和疲劳寿命方面的显着改善。在较低的CBR百分比下,发现关键菌株很高,强调了池塘灰稳定的益处将很突出的事实。

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