...
首页> 外文期刊>Procedia Computer Science >Snow Avalanche Susceptibility Based Assessment of Release Zones over Complex Terrain of Siachen Glacier Applying Ramms and Dsr as Active Macroclimatic Factor
【24h】

Snow Avalanche Susceptibility Based Assessment of Release Zones over Complex Terrain of Siachen Glacier Applying Ramms and Dsr as Active Macroclimatic Factor

机译:基于Rams和Dsr作为活动大气候因子的,基于雪崩敏感性的锡亚琴冰川复杂地形释放区评估

获取原文
           

摘要

Glaciers are a critical component of the earth system and environment, both in Polar regions and high altitude terrains. At glaciated terrain, local physiographical and climatological variance causes natural hazard which can lead to local and regional consequences. However, focusing the local complex terrain, the snow avalanches are not easily predictable. RAMMS (Rapid mass movement) application has applied successfully to determine the release areas for snow avalanche dimensions, yet the local microclimatic parameters have not been considered. To assess and identify the susceptible zones on basis of snow avalanche susceptibility, we applied RAMMS-avalanche simulation for avalanche dimension and MTLCIM-XL (Mountain Microclimate) simulator to calculate downward shortwave radiation (DSR) integration as the active microclimatic factor, at target release areas over the Siachen glacier. We obtain high dimension values (above assume a maximum value of pressure 50-80 kPa) for the selected release areas from the resultant simulation of snow avalanche maximum dimension. Additional integrative approach base assessment of DSR calculation revealed high values (threshold of daily mean ≥ 350-400 W/m 2 ) specifically over three release zones for critical month of April (daily mean based). Prospectively, the conclusive susceptibility analysis depicts the target release areas as potential zones for snow avalanche. In conclusion, the combined approach of RAMMS avalanche simulation with the consideration of local microclimatic parameters show better results; and will need to be considered in future studies of snow avalanche susceptibility and preparedness.
机译:在极地地区和高海拔地区,冰川都是地球系统和环境的重要组成部分。在冰川地形上,局部的地理和气候变化会导致自然灾害,从而可能导致局部和区域性后果。然而,集中在当地复杂地形上的雪崩很难预测。 RAMMS(快速质量运动)应用程序已成功应用于确定雪崩尺寸的释放区域,但尚未考虑局部微气候参数。为了评估和确定雪崩易感性的敏感区,我们在目标释放时应用了RAMMS-雪崩模拟雪崩尺寸和MTLCIM-XL(山地微气候)模拟器来计算向下的短波辐射(DSR)积分作为活动微气候因子,锡亚琴冰川地区。我们从雪崩最大尺寸的合成模拟中获得了选定释放区域的高尺寸值(以上假设最大压力为50-80 kPa)。 DSR计算的其他综合方法基础评估显示了较高的值(每日平均阈值≥350-400 W / m 2),特别是在4月的关键月份的三个释放区域(基于每日平均)。最终,敏感性分析将目标释放区域描述为雪崩的潜在区域。总之,结合局部微气候参数的RAMMS雪崩模拟的组合方法显示出更好的结果。并且在以后的雪崩敏感性和备灾研究中将需要考虑。

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