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Investigation of Natural Beachrock and Physical–Mechanical Comparison with Artificial Beachrock Induced by MICP as a Protective Measure against Beach Erosion at Yogyakarta, Indonesia

机译:麦克风诱导的天然滨园及物理力学比较的调查,以印度尼西亚日惹海滩侵蚀的保护措施

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Typically, the mitigation of coastal erosion is achieved by amending surface conditions using materials, such as concrete. The objective of this study is to evaluate the feasibility of constructing artificial beachrocks using natural materials (e.g., microbes, sand, shell, pieces of coral, and seaweed, etc.) within a short time, and to propose the method as a novel strategy for coastal protection. Initially, a survey on resistivity and a multichannel analysis of seismic waves (MASW) were conducted along the coastal lines to characterize and elucidate the subsurface structure of existing beachrocks in the Southeast Yogyakarta coastal area, Krakal–Sadranan beach, Indonesia. The field survey on natural beachrocks suggested that both resistivity and shear wave velocity were higher in the deeper deposits compared to the underlying unconsolidated sand layer within a depth of approximately 1.5 m and covering an area of 210.496 m 2 for the α-section and 76.936 m 2 for the β-section of beachrock deposit. The results of the sand solidification test in the laboratory showed that treated sand achieved unconfined compressive strength of up to around 6 MPa, determined after a treatment period of 14 days under optimum conditions.
机译:通常,通过使用如混凝土的材料修改表面条件来实现沿海侵蚀的缓解。本研究的目的是评估在短时间内使用天然材料(例如微生物,砂,壳,珊瑚和海藻等)构建人造滩铆接的可行性,并提出该方法作为一种新的策略用于沿海保护。最初,关于电阻率和对地震波(MasW)的多通道分析的调查沿着沿海地线进行,以表征和阐明东南部的沿海地区,克拉卡尔萨曼海滩,印度尼西亚克拉卡尔 - 萨兰南海滩现有的滨水群地下结构。天然滩铆接的田间调查表明,与底层的未覆盖砂层相比,较深的沉积物的电阻率和剪切波速度较高,其深度约为1.5米,占α-部分的210.496 m 2的面积和76.936米2为滨衣架的β-部分。实验室中的砂凝固试验结果表明,经处理的砂在最佳条件下在14天的治疗期后确定了不包含的抗压强度,高达约6MPa。

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