首页> 外文期刊>Australian Geomechanics >CASE STUDY: COMPACTION OF COAL ASH FILL BY IMPACT ROLLING AS A METHOD OF SUBGRADE IMPROVEMENT BENEATH A HEAVY DUTY PAVEMENT
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CASE STUDY: COMPACTION OF COAL ASH FILL BY IMPACT ROLLING AS A METHOD OF SUBGRADE IMPROVEMENT BENEATH A HEAVY DUTY PAVEMENT

机译:案例研究:通过重击压实粉煤灰作为重载路面下路基改善的一种方法

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An intermodal logistics centre for bulk distribution of shipping containers by both road and rail is currently under construction at a site near Enfield in SW Sydney. The 70 ha project site was used as a rail maintenance facility until the early 1990's, when it was largely dismantled. A container terminal yard will occupy approximately one-third of the project site, which will require construction of a heavy duty pavement to support the operational loads. The design of the terminal area is based on construction of a uniform earthworks platform, requiring both cut and fill to attain design levels, to act as a stable subgrade for the pavement layers. Previous studies revealed the presence of poorly compacted fills across the site that vary significantly both in composition and thickness. Of particular interest was the presence of a significant volume of coal ash fill, which was the thickest fill deposit across a large part of the site. The coal ash was found to be poorly compacted, but laboratory testing indicated it could achieve high strength and CBR index values when compacted to a dense state. The coal ash could thus be treated in place and incorporated into the subgrade earthworks or it could be mined and re-used as general fill in other parts of the site. A programme of field compaction trials was implemented, using conventional vibratory rollers and also impact rollers to determine the optimum compaction method for the coal ash and other fill materials. The field trials showed that compaction of the coal ash significantly reduced its void ratio by approximately 30% with corresponding settlement on compaction. The outcome of these field trials enabled the contractor to develop a ground treatment methodology tailored to the fill material type, which also conformed to the design specification for the subgrade layers.
机译:目前正在悉尼西南部恩菲尔德附近的地点建设一个联运物流中心,该中心通过公路和铁路同时散装运输集装箱。这个占地70公顷的项目场地一直被用作铁路维护设施,直到1990年代初被大量拆除。集装箱码头堆场将占据项目场地的约三分之一,这将需要建造重型人行道来支撑运营负荷。终端区的设计基于统一的土方工程平台的构建,需要进行挖方和填方以达到设计水平,以充当人行道层的稳定路基。先前的研究表明,整个场地存在压实较差的填充物,其成分和厚度均存在很大差异。特别令人感兴趣的是存在大量的煤灰填充物,这是整个场地大部分区域中最厚的填充物。发现粉煤灰的压实性较差,但实验室测试表明,将其压缩至致密状态可达到较高的强度和CBR指数值。因此,可以将煤灰处理到位并掺入路基土方工程中,也可以将其开采并重新用作工地其他部分的一般填充物。使用常规的振动压路机和冲击压路机执行了现场压实试验计划,以确定粉煤灰和其他填充材料的最佳压实方法。现场试验表明,粉煤灰的压实可将其空隙率显着降低约30%,并有相应的压实沉降。这些现场试验的结果使承包商能够开发针对填充材料类型量身定制的地面处理方法,该方法也符合路基层的设计规范。

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