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Hydrothermal System of the Papandayan Volcano from Temperature, Self-Potential (SP) and Geochemical Measurements

机译:罂粟山火山的水热系统从温度,自我电位(SP)和地球化学测量

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Papandayan volcano in West Java, Indonesia, is characterized by intense hydrothermal activities manifested by numerous fumaroles at three craters or kawah, i.e. Mas, Manuk and Baru. The latter was created after November 2002 phreatic eruption. Since 2011, numerous volcano-tectonic B events are encountered and the volcano was set on alert status on several occasions. The purpose of the present study is to delineate the structure of the summital hydrothermal system from Self-Potential (SP), soil temperature and gas concentrations in the soil (CO_2, SO_2 and H_2S) data. This combination of geophysical and geochemical methods allows identification of the weak permeable zones serving as preferential pathways for hydrothermal circulation and potential candidates to future landslides or flank collapses. This study is an on-going collaborative research project and we plan to conduct electrical resistivity tomography (ERT) and also Induced-Polarization (IP) surveys. Additional data would allow the 3D imaging of the studied area. The IP parameters will be used to characterise and to quantify the degree of alteration of the volcanic rocks as has been shown very recently in the laboratory studies. There are also rocks and soil samples that will undergo laboratory analyses at ISTerre for IP and complex resistivity parameters at the sample scale that will help to interpret the survey results.
机译:印度尼西亚西爪哇省的巴布纳扬火山的特点是浓烈的水热活动,在三个陨石坑或kawah,即Mas,Manuk和Baru的众多富马拉。后者是在2002年11月的潜水之后创建的。自2011年以来,遇到了许多火山构造B事件,并在几次警报状态上设定了火山。本研究的目的是描绘概要水热系统的结构免于土壤(CO_2,SO_2和H_2S)数据中的自电位(SP),土壤温度和气体浓度。地球物理和地球化学方法的结合使作为优先通道为热液循环和潜在候选国未来的滑坡或崩塌侧翼的弱透水区的标识。本研究是一项持续的协作研究项目,我们计划进行电阻率断层扫描(ERT)并进行诱导极化(IP)调查。附加数据允许研究区域的3D成像。 IP参数将用于表征和量化火山岩的变化程度,如最近在实验室研究中所示。还有岩石和土壤样品将在Sermate规模的IP和复杂电阻率参数下进行实验室分析,这将有助于解释调查结果。

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