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Estimation of the Serviceability of Forest Access Roads

机译:估计森林接入道路的可维护性

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The purpose of this study was to ascribe attributes to forest access roads, to allow for estimation of their serviceability on the basis of their current condition. The approach estimates the quantity of timber that may be hauled through without critically damaging the flexible pavements. Seventy-two roads were classified on the basis of their surface conditions, subgrade material, and surface deflection as the strength parameter, for 40 and 60 t Gross Vehicle Weight. Using non-parametric statistical techniques, it was found that the surface quality of pavements was largely dependent on drainage conditions (coefficient of determination r2 = 0.84), and that a strong relationship (r2 = 0.90) also existed between drainage and the number of potholes. Pavements with peat subgrades were found to exhibit significantly higher critical deflections (5.6 mm) than pavements with mineral subgrades (1 mm), coupled with their inherent variability, it is arguable that visual classification may not be suitable for such pavements. On the basis of these results, the serviceability of individual roads, in Equivalent Standard Axle Loads (ESAL) was estimated. Potential pavement damage by a standard 6 axle timber haulage truck, of 40 t Gross Vehicle Weight, with a payload of 27 t, was evaluated to be triple that due to a standard axle (8.16 t). Increasing the payload by about 10%, increased the ESAL required to transport a unit volume of timber, hence potential pavement damage, by 20%. Consequently, a significant reduction in the serviceability of forest access roads may be incurred by small overload margins that are usually ignored.
机译:本研究的目的是将属性归于森林访问道路,以便根据其当前条件估计其可维护性。该方法估计木材的数量,其可以牵引,而无需严格损坏柔性路面。基于其表面条件,路基材料和表面偏转作为强度参数,七十二条道路被分类为40和60 T总车辆重量。使用非参数统计技术,发现路面的表面质量在很大程度上取决于排水条件(r2 = 0.84的系数R2 = 0.84),并且在排水和坑洼之间存在强大的关系(R2 = 0.90) 。发现具有泥炭路面的路面表现出明显更高的临界偏转(5.6毫米),而不是矿物质路基(1毫米),加上其固有的可变性,可以说明视觉分类可能不适合这种路面。在这些结果的基础上,估计了在等效标准轴载(ESAL)中的各个道路的可维护性。标准的6轴木材牵引卡车的潜在路面损坏为40吨的车辆重量,有效载荷为27t,被评估为由于标准轴(8.16t)的三倍。将有效载荷提高约10%,增加了运输单位数量木材所需的ESAL,因此潜在的路面损坏,达到20%。因此,森林接入道路的可维护性的显着降低可能是由于通常被忽略的小过载边缘而产生的。

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