Optimizing the Embankment Fill Reinforcement for Rest Area on the Semarang-Solo Toll Road with Geoframe System

Nadya Ayu Anindita, Dandung Sri, Raffly Muhammad Darmawan
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Abstract

On KM 456 Semarang-Solo Toll Road, a rest area which was predicted to be the grandest in Java was built. The rest area covered both sides of the toll road, which is in zone A (heading to Solo) and zone B (heading to Semarang). The rest area is built with remarkable view and unique traditional design with five roofs that represented five surrounding volcanoes. With all its philosophy, the owner sought the best option for all its structures, not only from the most economic, efficient, robust, but also the greenest option for the design. The rest area will be built on embankment with the highest being 11 meters. The embankment’s subgrade is rice field with 2 meters of soft silty clay. The initial design is to reinforce the embankment with 7-meters-tall concrete retaining wall and 2 rows of bore pile with 80 cm diameters and depth of 18 meters. This option was deemed to be very budget consuming, time consuming, and not very green. The Geoframe system, which is a combination of Geosynthetic materials, and wire mesh as facing was then chosen as the reinforcement for the embankment. The geogrid as reinforcement has proven to be very easy to install yet it’s very strong as the tensile capacity can be adjusted to the embankment’s needs. The Geoframe system can be constructed almost vertically (with a slope of 85°). Topographic data, SPT, CPT and laboratory test results were used to design a safe and efficient Geoframe system. Slope stability was analyzed using the Finite Element Method with PLAXIS 3D software. The construction carried out from 2019 to 2020 has proven that this method can be a safe, efficient, environmentally friendly option and still followed the articles stated in Indonesian National Standard for Geotechnical Design Requirements 8460: 2017.
利用 Geoframe 系统优化三宝垄-索洛洛收费公路休息区的路堤填土加固工程
在 KM 456 三宝垄-梭罗收费公路上,建起了爪哇最宏伟的休息区。休息区覆盖了收费公路的两侧,分别位于 A 区(前往梭罗)和 B 区(前往三宝垄)。休息区风景优美,采用独特的传统设计,五个屋顶分别代表周围的五座火山。在设计理念上,业主寻求所有结构的最佳选择,不仅要最经济、最高效、最坚固,还要最环保。休息区将建在最高 11 米的堤坝上。路堤的路基是稻田,其中有 2 米高的软质淤泥。初步设计是用 7 米高的混凝土挡墙和 2 排直径 80 厘米、深 18 米的钻孔桩加固堤坝。这一方案被认为非常耗费预算和时间,而且不太环保。于是,我们选择了土工格栅系统,该系统由土工合成材料和钢丝网组合而成,用于加固堤坝。事实证明,土工格栅作为加固材料非常易于安装,而且非常坚固,因为其抗拉强度可以根据堤坝的需要进行调整。Geoframe 系统几乎可以垂直施工(坡度为 85°)。地形数据、SPT、CPT 和实验室测试结果被用于设计安全高效的 Geoframe 系统。使用 PLAXIS 3D 软件的有限元法对边坡稳定性进行了分析。从 2019 年到 2020 年进行的施工证明,这种方法是一种安全、高效、环保的选择,并且仍然符合印度尼西亚国家岩土工程设计要求标准 8460:2017 中规定的条款。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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