青藏高原环境效应与地震活动综述

Yanyun Zhang , Yu Zhang , Huazheng Su , Ruidong Li , Bingbing Han
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引用次数: 0

摘要

本文以青藏高原为研究对象。系统地回顾了干冷季节极端气候条件下的地震活动特征和广泛的环境影响。首先,通过详细的数据分析和文献综述,揭示了青藏高原季节性显著降水和温度变化与地震活动频率和强度等关键参数之间的潜在联系。该过程深入分析了极端降雨和温度变化等自然条件如何直接或间接地影响地震的准备和触发机制,从而促进或抑制地震活动的发生。强调寒季和旱季与地震活动的密切关系,并讨论了这些特殊气候条件对地震活动模式的独特影响。此外,还分析了高原地区地震活动的区域分布特征,包括年发生次数、震级分布等关键数据,为制定区域地震灾害应对策略提供了有力的数据支持。此外,分析了滑坡、泥石流、堰塞湖等地震可能引发的各种次生灾害的特征,加深了对地震灾害链复杂性的认识。旨在为今后的地震灾害防治工作提供科学依据,促进青藏高原乃至世界地震科学研究和灾害管理水平的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Summary of environmental effect and seismic activity in Qinghai-Xizang Plateau
This paper focuses on the Qinghai-Xizang Plateau. It systematically reviews its seismic activity characteristics and extensive environmental effects under extreme climatic conditions in dry and cold seasons. Firstly, through detailed data analysis and literature review, it is revealed how the seasonal significant rainfall and temperature changes in the plateau establish potential links with key parameters such as the frequency and intensity of seismic activity. This process deeply analyzes how natural conditions such as extreme rainfall and temperature changes directly or indirectly affect the mechanism of earthquake preparation and triggering, which may promote or inhibit the occurrence of seismic activity. The close relationship between cold and dry seasons and seismic activity is emphasized, and the unique influence of these special climatic conditions on seismic activity patterns is discussed. In addition, the regional distribution characteristics of seismic activity in the plateau area are also analyzed, including key data such as annual occurrence number and magnitude distribution, which provides strong data support for formulating regional earthquake disaster response strategies. In addition, the characteristics of various secondary disasters that may be caused by earthquakes, such as landslides, debris flows, barrier lakes, etc., are analyzed, which deepens the understanding of the complexity of the earthquake disaster chain. The aim is to provide a scientific basis for future earthquake disaster prevention and control work and to promote the improvement of earthquake science research and disaster management levels in the Qingzang Plateau and even the world.
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