...
首页> 外文期刊>MATEC Web of Conferences >Development of flume model of inclined capillary barrier (clay silt/CDW) in a subtropical climate scenario
【24h】

Development of flume model of inclined capillary barrier (clay silt/CDW) in a subtropical climate scenario

机译:亚热带气候情景中倾斜毛细管屏障(粘土淤泥/ CDW)的水模型的研制

获取原文
           

摘要

Interest in research on capillary barrier (CB) in regions with humid climates (tropical and subtropical) is increasing. One of the main advantages of such cover type is the greater flexibility regarding the materials that could compose it. A possibility is the use of construction and demolition wastes (CDW), which would contribute to the solution of CDW destination, a problem in urban centers. Thus, the present work aimed an experimental evaluation of CB cover with CDW in its composition. A CB cover system was reproduced in a physical model in acrylic box, with clay soil as capillary layer and CDW as capillary block, given its granulometric and hydraulic contrast. The layers were arranged with the usual landfill slope, of 1:3, and a very heavy rain, of 90 mm, was simulated. Three tests were performed on the flume model, in which initial CDW saturation degree (S_(0)) was varied in 4,5%, 10,3% and 17,3%. Results indicate formation, indeed, of capillary barrier between the two used materials. The most efficient model was the one with lowest initial CDW S_(0), of 4,5%. As the CWD S_(0)increased, time of flow permanence at materials interface decreased, indicating a CWD S_(0)in which such capillary barriers no longer function effectively. Regarding percolation rate, the maximum for a 90 mm rainfall was 2,7%, which fits the landfill cover projects criteria consulted.
机译:潮湿气候(热带和亚热带)中毛细管屏障(CB)研究的兴趣正在增加。这种覆盖类型的主要优点之一是关于可以构成它的材料的柔韧性。可能性是使用建设和拆迁废物(CDW),这将有助于CDW目的地的解决方案,城市中心的问题。因此,本作者旨在将CB覆盖的实验评估用其组成中的CDW。 CB覆盖系统在丙烯酸盒的物理模型中再现,克莱土作为毛细管层和CDW为毛细管块,鉴于其粒度和液压对比度。这些层布置在通常的垃圾填埋场坡度,1:3,并模拟90毫米的大雨。在水槽模型中进行三次测试,其中初始CDW饱和度(S_(0))以4,5%,10,3%和17,3%变化。结果表明两种二手材料之间的毛细管屏障的形成。最有效的模型是具有最低初始CDW S_(0)的模型,为4,5%。随着CWD S_(0)的增加,材料界面处的流动时间减少,表示CWD S_(0),其中这种毛细管屏障不再有效地运作。关于渗透速率,90毫米降雨的最大值为2,7%,适合垃圾填埋场涵盖项目标准咨询。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号