首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Cosmic Noise Absorption During Solar Proton Events inWACCM-D and Riometer Observations
【24h】

Cosmic Noise Absorption During Solar Proton Events inWACCM-D and Riometer Observations

机译:宇宙噪声吸收在太阳质子事件inWACCM-D和宇宙噪声测量器观察

获取原文
获取原文并翻译 | 示例
           

摘要

Solar proton events (SPEs) cause large-scale ionization in the middle atmosphere leading to ozone loss and changes in the energy budget of the middle atmosphere. The accurate implementation of SPEs and other particle ionization sources in climate models is necessary to understand the role of energetic particle precipitation in climate variability. We use riometer observations from 16 riometer stations and the Whole Atmosphere Community Climate Model with added D region ion chemistry (WACCM-D) to study the spatial and temporal extent of cosmic noise absorption (CNA) during 62 SPEs from 2000 to 2005.We also present a correction method for the nonlinear response of observed CNA during intense absorption events. We find that WACCM-D can reproduce the observed CNA well with some need for future improvement and testing of the used energetic particle precipitation forcing. The average absolute difference between the model and the observations is found to be less than 0.5 dB poleward of about 66° geomagnetic latitude, and increasing with decreasing latitude to about 1 dB equatorward of about 66° geomagnetic latitude. The differences are largest during twilight conditions where the modeled changes in CNA are more abrupt compared to observations. An overestimation of about 1° to 3° geomagnetic latitude in the extent of the CNA is observed due to the fixed proton cutoff latitude in the model. An unexplained underestimation of CNA by the model during sunlit conditions is observed at stations within the polar cap during 18 of the studied events.
机译:太阳质子事件(spe)引起大规模的中间电离大气层导致臭氧损耗和能量收支的变化中间的气氛。spe的实现和其他粒子电离源在气候模型是必要的理解高能粒子的作用降水的气候多样性。宇宙噪声测量器观察来自16个宇宙噪声测量器大气和整个社区的气候模型与添加D地区离子化学(WACCM-D)研究宇宙的空间和时间范围噪音吸收(中央社)在62年从2000年spe到2005年。观察期间CNA的非线性响应强烈吸收事件。可以观察到的繁殖和一些CNA的好吗未来的改进和测试的必要性使用高能粒子降水强迫。之间的平均绝对差模型观察是发现小于0.5dB向极约66°地磁纬度,和增加与减少纬度1 dB朝赤道方向约66°地磁纬度。《暮光之城》的条件,模型的变化CNA更突然而观察。过高的估计约1°3°地磁纬度在CNA观察到的程度固定模型中的质子截止纬度。一个原因不明的CNA的低估模型在阳光照射的条件下观察到站在在18的极地冰冠研究了事件。

著录项

相似文献

  • 外文文献
  • 中文文献
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