Data for Durability for Cement Concrete Pavement and Flexible Pavement in Expansive Soil Region

A. Singh, M. Nigam, R. K. Srivastava
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Abstract

In India more than 70% of the population lives in villages and their main source of livelihood is agriculture. Because of stringent environmental rules industries are now shifting towards villages. Both of these activities require a better means of communication which can be provided by good conditioned roads. Earlier village roads had low volume of traffic, consisting mostly of rural transport vehicles, like agricultural tractors/trailers, light goods vehicles, buses, animal drawn vehicles, motorized two-wheelers and cycles. Some of the rural roads used to have light and medium trucks carrying sugarcane, timber, quarry materials, etc. Kumar et al. (1998) presented a case study of Jaipur district of India regarding rural travel characteristics and highlighted the importance of the contribution of the access roads in rural development. As of now flexible pavements are preferred for village connectivity because of the type of traffic and low initial cost of construction. But due to high cost of maintenance, sensitivity to water logging and lack of institutional set up for the maintenance, village roads deteriorate very fast especially in Expansive soil regions. Every year their several kilometers are washed away by floods and water logging. Moreover, the nature of traffic is also changing due to industrial growth in the nearby areas. Rigid pavement is an alternative to flexible pavement where the soil strength is poor, aggregate are costly and the drainage conditions are bad (as in portions of the roads passing through villages and water logged areas). However, they demand a high degree of professional expertise at the design stage, construction and maintenance besides high initial cost. The guidelines have been developed by Indian Road Congress (1RC) for the design and construction of cement concrete pavements for village roads in year 2014, named as IRC: SP : 62 – 2014 However cement Concrete Pavements are also not a sustainable option in expansive soil Thus, the policy makers, planners and engineers are bound to think about a more suitable alternative pavement for rural roads in expansive soil.
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膨胀土地区水泥混凝土路面和柔性路面耐久性数据
在印度,超过70%的人口生活在农村,他们的主要生计来源是农业。由于严格的环境法规,工业正在向农村转移。这两项活动都需要条件良好的道路提供更好的通讯手段。早期的乡村道路交通量很少,主要由农村运输车辆组成,如农用拖拉机/拖车、轻型货车、公共汽车、畜力车、机动两轮车和自行车。一些乡村道路上曾经有轻型和中型卡车运载甘蔗、木材、采石场材料等。库马尔等人(1998)提出了一个关于印度斋浦尔地区农村旅行特征的案例研究,并强调了道路在农村发展中的重要性。到目前为止,由于交通的类型和较低的初始建设成本,柔性路面是村庄连接的首选。但由于维修成本高、对内涝敏感以及缺乏相应的维修机构,乡村公路的退化速度非常快,特别是在膨胀土地区。每年,他们的几公里都被洪水和水涝冲走。此外,由于附近地区的工业发展,交通的性质也在发生变化。在土壤强度差、骨料昂贵和排水条件差的地方(如穿过村庄和积水地区的部分道路),刚性路面可以替代柔性路面。然而,除了高昂的初始成本外,它们在设计阶段、施工和维护方面都需要高度的专业知识。印度道路大会(1RC)为2014年农村道路水泥混凝土路面的设计和施工制定了指导方针,命名为IRC: SP: 62 - 2014。然而,水泥混凝土路面在膨胀土中也不是一种可持续的选择,因此,政策制定者、规划者和工程师必然会考虑在膨胀土中为农村道路提供更合适的替代路面。
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