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首页> 外文期刊>Civil and Environmental Research >Performance, Problems and Remedial Measures for Roads Constructed on Expansive Soil in Ethiopia – A Review
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Performance, Problems and Remedial Measures for Roads Constructed on Expansive Soil in Ethiopia – A Review

机译:埃塞俄比亚膨胀土上道路的性能,问题和补救措施-回顾

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摘要

Construction of pavement on weak or soft soil is highly risky because such soil is susceptible to differential settlements, poor shear strength, and high compressibility. In developing countries like Ethiopia transportation facilities are very important for sustainable development. However, a better performance of the agricultural sector in particular as Ethiopia’s economic growth is highly dependent on it, and the sustainable economic growth of the country at large would be achieved through an improvement of the basic infrastructure. Consequently, the road network has been identified as a serious bottleneck for the economic development of the country. An appreciable part of Ethiopia is covered by expansive soil. Most of the roads constructed and proposed as well as substantial amount of the newly planned railway routes in the country pass through in the heart of expansive soils. The roads on this type of soils fail before their expected design life, in some cases after few months of completion. It has been reported in 2004 that Addis Ababa City Roads Authority had annual expenditure of around 300 million Ethiopian Birr for road construction and maintenance out of which more than 30 million Ethiopian Birr was expended for routine maintenances which is too big and require special attention. The current maintenance and rehabilitation practice also depends more on visual observation and functional evaluations such as surface roughness and visual survey at network level rather than detail pavement evaluation at project level. Major trunk and lower class universal rural access roads failed with in liability period where subgrade soil is black clay soil, but researches show that various treatments such as mechanical, lime and chemical stabilization has been implemented. Moreover, based on the pavement survey, the CBR criteria couldn’t result in reliable solution in case of pavement on expansive subgrade. Thus additional Stability Criteria should be adopted to resist the heaving condition. This paper aims to present a review on the performance, problems and possible remedial measures practices for roads constructed on these problematic soils in the country. Finally, emphasis should be given to the importance in construction in this kind of soil of strictly applying engineered design of geometric, drainage, pavement thickness, material selection and proportioning. Thus, those concerned bodies shall decide to accept and control the risk associated with construction on this soil or not, or to decide that more detail study is required to allow for extra design and construction pre-emptive measures once the potential problem has been identified and the end user convinced of the cost-savings in adopting a pro-active approach.
机译:在软弱的土壤上建造人行道的风险很高,因为这种土壤容易出现差异沉降,抗剪强度差和高可压缩性。在像埃塞俄比亚这样的发展中国家,运输设施对于可持续发展非常重要。但是,农业部门的良好表现,尤其是埃塞俄比亚的经济增长高度依赖于农业,因此,通过改善基础设施,可以实现整个国家的可持续经济增长。因此,公路网已被确定为该国经济发展的严重瓶颈。埃塞俄比亚的相当一部分被广阔的土壤覆盖。该国建造和提议的大部分道路以及大量新计划的铁路路线都经过膨胀土壤的中心。在某些类型的土质道路上,道路在其预期的设计寿命之前就已经失效,在某些情况下,还需要数月的竣工时间。据报道,2004年,亚的斯亚贝巴市道路管理局每年用于道路建设和维护的支出约为3亿埃塞俄比亚比尔,其中超过3,000万埃塞俄比亚比尔的日常维护支出太大,需要特别注意。当前的维护和修复实践还更多地取决于视觉观察和功能评估(例如网络级别的表面粗糙度和视觉调查),而不是项目级别的详细路面评估。主要干道和下层普遍的农村道路在责任期内以路基土为黑黏土失败,但研究表明,已经实施了机械,石灰和化学稳定等各种处理方法。此外,根据路面调查,如果在膨胀的路基上进行路面铺设,则CBR标准无法得出可靠的解决方案。因此,应采用附加的稳定性准则来抵抗起伏情况。本文旨在对在该国这些有问题的土壤上修建的道路的性能,问题和可能的补救措施做法进行综述。最后,应强调严格按照几何,排水,路面厚度,材料选择和配比的工程设计在这种土壤中施工的重要性。因此,有关机构应决定是否接受和控制与在该土壤上进行施工有关的风险,或者一旦发现潜在问题并决定需要进行更详细的研究,以便采取额外的设计和施工先发措施。最终用户相信采用主动方法可以节省成本。

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