首页> 外文期刊>Journal of Volcanology and Geothermal Research >Longitudinal Structure Of Pyroclastic-flow Deposits, Revealed By Gpr Survey, At Merapi Volcano, Java, Indonesia
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Longitudinal Structure Of Pyroclastic-flow Deposits, Revealed By Gpr Survey, At Merapi Volcano, Java, Indonesia

机译:Gpr调查显示,火山碎屑流沉积物的纵向结构,印度尼西亚爪哇默拉皮火山

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摘要

In 2006 Merapi volcano, Indonesia, erupted for a few months, producing several block-and-ash flows reaching a maximum distance of 7.5 km from the main vent. During the eruption, we conducted a survey on those flow deposits in the Gendol Valley at Kaliadem village, about 4.5 km from the Merapi submit, using a Ground Penetrating Radar (GPR). The upper deposit was studied in its distal reaches, whereas the one below was studied in its medial reaches. The field study was carried out with a commercial RAMAC R GPR coupled with 100 MHz antennas, and the data treatment conducted with Reflex~(TM) software. From this survey, we determined both deposits' local (1) thickness - reaching a maximum of 15 m - and (2) internal architecture. This last one is governed by long reflecting horizons extending over 20 to 30 m that delimit layers showing progradation patterns in their distal reaches. Within these layers we could also observe an internal architecture of still unknown origin. The layers are interpreted as the result of the flow pulses that progressively deposited downstream-ward by progradation. However the interpretation of those GPR profiles is a bit hazardous, because of the absence of outcrops, and we can only proceed by analogy with other studies. Nevertheless, despite numerous limitations, GPR is a helpful tool to understand pyrodastic deposits' structure when no visual observations are available.
机译:2006年,印度尼西亚的默拉皮火山爆发了几个月,产生了数次块状和灰烬流,距主喷口的最大距离为7.5公里。在喷发过程中,我们使用探地雷达(GPR)对距默拉皮提交区约4.5公里的Kaliadem村的热多尔谷中的流动沉积物进行了调查。上层沉积物是在其远端研究的,而下层沉积物是在其中游研究的。现场研究是使用商用RAMAC R GPR与100 MHz天线相结合进行的,数据处理使用ReflexTM软件进行。根据这项调查,我们确定了这两个矿床的局部(1)厚度(最大厚度为15 m)和(2)内部构造。最后一个由延伸超过20至30 m的长反射层控制,该层界定了在其远处显示出发育模式的层。在这些层中,我们还可以观察到起源仍然未知的内部架构。这些层被解释为是通过流动逐渐向下游沉积的流动脉冲的结果。但是,由于没有露头,对那些GPR剖面的解释有些危险,我们只能与其他研究进行类推。尽管如此,尽管有很多限制,但是在没有肉眼观察的情况下,GPR仍然是了解火山岩沉积物结构的有用工具。

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