...
首页> 外文期刊>Atmospheric chemistry and physics >Karymsky volcano eruptive plume properties based on MISR multi-angle imagery and the volcanological implications
【24h】

Karymsky volcano eruptive plume properties based on MISR multi-angle imagery and the volcanological implications

机译:基于MISR多角度影像的卡林斯基火山喷羽特征及其火山学意义。

获取原文
           

摘要

Space-based operational instruments are in unique positions to monitor volcanic activity globally, especially in remote locations or where suborbital observing conditions are hazardous. The Multi-angle Imaging SpectroRadiometer (MISR) provides hyper-stereo imagery, from which the altitude and microphysical properties of suspended atmospheric aerosols can be derived. These capabilities are applied to plumes emitted at Karymsky volcano from 2000 to 2017. Observed plumes from Karymsky were emitted predominantly to an altitude of 2–4?km, with occasional events exceeding 6 km. MISR plume observations were most common when volcanic surface manifestations, such as lava flows, were identified by satellite-based thermal anomaly detection. The analyzed plumes predominantly contained large (1.28?μm effective radius), strongly absorbing particles indicative of ash-rich eruptions. Differences between the retrievals for Karymsky volcano's ash-rich plumes and the sulfur-rich plumes emitted during the 2014–2015 eruption of Holuhraun (Iceland) highlight the ability of MISR to distinguish particle types from such events. Observed plumes ranged from 30 to 220?km in length and were imaged at a spatial resolution of 1.1?km. Retrieved particle properties display evidence of downwind particle fallout, particle aggregation and chemical evolution. In addition, changes in plume properties retrieved from the remote-sensing observations over time are interpreted in terms of shifts in eruption dynamics within the volcano itself, corroborated to the extent possible with suborbital data. Plumes emitted at Karymsky prior to 2010 display mixed emissions of ash and sulfate particles. After 2010, all plumes contain consistent particle components, indicative of entering an ash-dominated regime. Post-2010 event timing, relative to eruption phase, was found to influence the optical properties of observed plume particles, with light absorption varying in a consistent sequence as each respective eruption phase progressed.
机译:天基作战仪器处于独特的位置,可在全球范围内监测火山活动,尤其是在偏远地区或亚轨道观测条件危险的地方。多角度成像光谱辐射仪(MISR)提供超立体成像,从中可以得出悬浮的大气气溶胶的高度和微物理特性。这些功能适用于从2000年至2017年在卡林斯基火山喷出的羽流。从卡林斯基火山观察到的羽流主要散发到2–4?km的高度,偶发事件超过6 km。当通过基于卫星的热异常检测识别出火山表面表现(例如熔岩流)时,MISR羽状观测最为常见。分析的烟流主要包含大(有效半径为1.28?μm),强烈吸收的颗粒,表明富含灰分的喷发。 Karymsky火山富含灰分的羽流与2014-2015年Holuhraun(冰岛)喷发时释放的富含硫的羽流的取回之间的差异凸显了MISR区分此类事件的颗粒类型的能力。观测到的羽状物长度在30至220?km之间,并以1.1?km的空间分辨率成像。检索到的粒子特性显示出顺风粒子沉降,粒子聚集和化学演化的迹象。另外,从遥感观测中获得的羽流特性随时间的变化可以用火山本身内部喷发动力学的变化来解释,这在亚轨道数据的支持下得到了最大程度的证实。卡里姆斯基(Karymsky)在2010年之前排放的烟羽显示出灰分和硫酸盐颗粒的混合排放。 2010年之后,所有羽状物均包含一致的颗粒成分,表明进入了以灰烬为主的状态。发现相对于喷发阶段的2010年后事件发生时间会影响观察到的羽状颗粒的光学特性,随着每个喷发阶段的进行,光吸收会以一致的顺序变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号