...
【24h】

Data acquisition and analysis for water main rehabilitation techniques

机译:供水修复技术的数据采集和分析

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The ability to regularly deliver safe drinking water is a constant challenge to municipalities worldwide. In Canada, the replacement/rehabilitation cost of water mains is estimated to be $28 billion (1997-2012). Therefore, selecting cost-effective repair and/or rehabilitation scenario(s) is essential to optimise the quality of existing water mains and minimise unnecessary rehabilitation costs. The research presented in this paper identifies several rehabilitation methods for water mains, which are classified into three main categories: (1) repair (i.e. open trench, sleeves); (2) renovation (i.e. slip lining, cement mortar lining, epoxy lining, cured in place pipe (CIPP)); and (3) replacement (i.e. pipe bursting, micro-tunnelling, horizontal directional drilling, auger boring, open cut). Due to complexity, scarcity, and enormity of data required to perform life cycle cost (LCC) and select the cost-effective scenario(s), the research presented focuses on LCC data acquisition and analysis. Data were collected from contractors and municipalities in Canada. Rehabilitation decision trees were developed as a preparation step for future LCC implementation. Breakage rate analysis was successfully developed to predict the intervals of various rehabilitation alternatives. The research presented is relevant to researchers and practitioners (municipal engineers, consultants, and contractors) to prioritise pipe inspection and rehabilitation planning for existing water mains.
机译:定期提供安全饮用水的能力一直是全球市政当局面临的持续挑战。在加拿大,更换/修复水管的费用估计为280亿加元(1997-2012年)。因此,选择具有成本效益的维修和/或修复方案对于优化现有水管的质量和最小化不必要的修复成本至关重要。本文提出的研究确定了几种水管修复方法,这些方法分为三大类:(1)维修(即开沟,套管); (2)装修(即滑衬,水泥砂浆衬里,环氧衬里,现场固化管(CIPP)); (3)更换(即管道爆破,微隧道,水平定向钻孔,螺旋钻,明挖)。由于执行生命周期成本(LCC)和选择具有成本效益的方案所需的数据的复杂性,稀缺性和庞大性,因此提出的研究重点是LCC数据获取和分析。数据是从加拿大的承包商和市政当局收集的。开发了康复决策树,作为未来LCC实施的准备步骤。破损率分析已成功开发,可以预测各种康复方案的间隔时间。所提出的研究与研究人员和从业人员(市政工程师,顾问和承包商)相关,它们优先考虑现有水管的管道检查和修复计划。

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