首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Fracture healing in a magma: An experimental approach and implications for volcanic seismicity and degassing
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Fracture healing in a magma: An experimental approach and implications for volcanic seismicity and degassing

机译:岩浆中的骨折愈合:一种实验方法及其对火山地震活动和除气的意义

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The healing of magmatic fractures is considered essential to repetitive seismicity and the closure of degassing paths during emplacement of lavas. To estimate the healing time of magmatic fractures, we performed healing experiments on rhyolitic melts at 850°1000℃ and 1.6-3.2 MPa for 0.5-94 h. Two cylindrical obsidian cores were juxtaposed on surfaces prepared by cutting the cores both with and without polishing. These were annealed in an open-system cell. The contact interface became coherent and finally disappeared. The water content across the contact initially decreased toward the interface via diffusive dehydration, but later homogenized. This change was interpreted to reflect atomic-scale closure of the interface, probably by chemical bonding. We defined this closure interval as microscopic healing time and determined this by fitting the measured profiles with a diffusion model. The microscopic healing time was strongly dependent on temperature and roughness of the interface and was, for the nonpolished interfaces, 67-74, 4.0-4.9, and 0.36-0.38 h at 850°, 900°, and 950℃, respectively, whereas for the polished examples it was 1-3 and 0.5-0.6 h at 850° and 900℃, respectively. This microscopic healing time is consistent with the period of actual seismicity and is prolonged sufficiently to permit the formation of millimeter-thick bubble-free obsidian layers along fractures in vesicular lavas through bubble resorption due to diffusive degassing.
机译:岩浆裂缝的愈合被认为对重复的地震活动和熔岩放置过程中除气路径的封闭至关重要。为了估算岩浆骨折的愈合时间,我们在850°1000℃和1.6-3.2 MPa的流纹熔体上进行了0.5-94 h的愈合实验。将两个圆柱形黑曜石核并置在通过切割有和没有抛光的芯而制备的表面上。这些在开放系统的单元中进行退火。接触界面变得连贯,最后消失了。接触点上的水含量最初通过扩散脱水朝界面降低,但随后均一化。该变化被解释为可能是通过化学键反映了界面的原子级闭合。我们将该闭合间隔定义为微观愈合时间,并通过将测得的轮廓与扩散模型拟合来确定该间隔。微观修复时间在很大程度上取决于界面的温度和粗糙度,对于未抛光的界面,在850°,900°和950℃时分别为67-74、4.0-4.9和0.36-0.38 h,而对于在抛光的例子中,分别在850°C和900°C下分别为1-3和0.5-0.6 h。该微观愈合时间与实际地震活动时间一致,并充分延长以允许由于扩散脱气导致的气泡吸收沿着泡状熔岩的裂缝沿毫米厚的无气泡黑曜石层形成。

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