ANALISIS BAHAYA, LINTASAN, DAN SISTEM PROTEKSI TERHADAP POTENSI LONGSORAN TIPE JATUHAN BATU PADA LERENG BANGUNAN PELIMPAH BENDUNGAN TUGU, JAWA TIMUR

M. I. Hamidi, I. Sadisun
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Abstract

The construction of the Tugu Dam spillway does not escape the problem of slope instability, especially the rock fall type landslide as a result of the rock slope cutting work at STA+80. The purpose of this study was to determine the characteristics of the rock discontinuity area and the solutions needed to address the potential hazards of rock fall on the slopes of spillway structure. In this study, a semi-quantitative method conducted based on the Rockfall Hazard Rating System (RHRS) which is carried out by identifying outcrops on rock slopes. Determination of the rock fall trajectory, was conducted by statistical methods on rock mass based on changes in velocity when rocks roll, slide, and bounce. Geologically, the research area belongs to the Mandalika Formation. Based on the RHRS weighting, the total score on the STA+80 slope is 399, which means that the slope needs to be repaired or given safely with a moderate level of urgency. The rock fall trajectory modeling at the measurement location X = 121,875 has a kinetic energy of 973.14 kJ andesite and 72.59 kJ of volcanic breccia, for high results of 0.43 meters of andesite reflection and 2.04 meters of volcanic breccia, and velocity results translational velocity obtained at 33.8 m/s andesite and 8.67 m/s volcanic breccia. The potential for rock fall requires a safety system with a type of retained flexible barriers with a height of 5 meters that can be applied to the toe of the slope.Keywords: rock fall, discontinuity, trajectory, protection system, Tugu Dam
分析东爪哇省纪念碑大坝斜坡斜坡上可能出现的石头级雪崩的危险、轨迹和保护系统
土谷坝溢洪道的建设不能避免边坡失稳问题,特别是由于STA+80的岩质边坡切割工作而导致的落石型滑坡。本研究的目的是确定岩石不连续区域的特征,以及解决溢洪道结构边坡上岩崩的潜在危害所需的解决方案。本研究基于岩崩危险性分级系统(Rockfall Hazard Rating System, RHRS),通过对岩石边坡露头进行识别,进行了一种半定量方法。根据岩体在滚动、滑动和弹跳时的速度变化,采用统计方法对岩体进行落石轨迹的确定。地质上属于曼达里卡组。根据rrs加权,STA+80边坡的总分为399分,意味着该边坡需要修复或安全给予,紧急程度中等。测量位置X = 121875处的岩崩轨迹建模得到的安山岩动能为973.14 kJ,火山角砾岩动能为72.59 kJ,安山岩反射0.43 m,火山角砾岩反射2.04 m,速度结果为安山岩平移速度为33.8 m/s,火山角砾岩平移速度为8.67 m/s。潜在的岩崩需要一个安全系统,它带有一种保留的柔性屏障,高度为5米,可以应用于斜坡的脚趾。关键词:岩崩,结构面,轨迹,防护系统,土谷坝
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