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2022年泸定M_(S)6.8地震同震形变特征及周边强震危险性 被引量:6
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作者 单新建 李彦川 +9 位作者 高志钰 华俊 黄星 龚文瑜 屈春燕 赵德政 陈俊先 黄传超 张迎峰 张国宏 《科学通报》 EI CAS CSCD 北大核心 2023年第8期944-953,共10页
2022年四川泸定6.8级地震发生于鲜水河断裂磨西段,为揭示此次地震的同震形变特征,收集了震中200 km范围内的连续全球定位系统(global positioning system,GPS)测站和震中50 km范围内的强震动数据,进行了高精度处理以提取测站的同震水平... 2022年四川泸定6.8级地震发生于鲜水河断裂磨西段,为揭示此次地震的同震形变特征,收集了震中200 km范围内的连续全球定位系统(global positioning system,GPS)测站和震中50 km范围内的强震动数据,进行了高精度处理以提取测站的同震水平位移.此外,还收集了覆盖震中区域的Sentinel和ALOS-2降轨数据,通过干涉差分技术处理并获得了卫星视线向同震形变场.结果显示:水平同震形变呈四象限分布,表明泸定地震的震源机制为左旋走滑;距震中16 km的强震动台站记录到了明显的位移波形,其峰值位移达14 cm、永久变形约为12 cm;合成孔径雷达干涉测量(interferometric synthetic aperture radar,InSAR)显示断层近场30 km×30 km区域具有明显的同震变形,断层西侧卫星视线向最大位移达15 cm,挖角乡附近的局部形变超过15 cm;野外调查推测在“二台子-爱国村”间的断层段发育地表破裂,但从InSAR形变场上难以判定,同震是否破裂到地表仍需详细的野外考察予以确定.反演了川滇块体北东边界主干断裂在泸定地震前的闭锁分布,并定量计算了断层的地震矩亏损,结果表明,2022年泸定6.8级地震充分释放了磨西段自1786年磨西M73/4地震以来积累的地震矩.据此研判近期在原震区发生更大震级地震的可能性不大;安宁河、则木河、大凉山和龙门山南段等断裂已累积的地震矩等效于MW7.0~7.7地震;鉴于泸定地震对上述断裂段均造成了库仑应力加载作用(>0.01 MPa),且在安宁河断裂北段的库仑应力加载超过了0.1 MPa的经验触发阈值,川滇块体北东边界尤其是安宁河断裂的未来强震危险性需密切关注. 展开更多
关键词 泸定地震 全球卫星定位系统 合成孔径雷达干涉测量 同震形变特征 地震危险性分析
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Dynamic swelling performance of hydrophobic hydrogels
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作者 Hui Guo junxian chen +3 位作者 Ziang Wang Hong Lei Guo Wei Hong Xiaolin Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第4期2178-2182,共5页
Conventional gels manifest monotonous swelling or shrinking performance upon immersing in solvents until reaching an equilibrium state. Recently, we discovered that the “hydrophobic hydrogels” prepared from hydropho... Conventional gels manifest monotonous swelling or shrinking performance upon immersing in solvents until reaching an equilibrium state. Recently, we discovered that the “hydrophobic hydrogels” prepared from hydrophobic polymer networks demonstrated dynamic swelling performance without equilibrium states. Upon water immersion, the gels expanded tremendously at the first stage until reaching a swelling peak;subsequently, the gels shrunk at an extremely slow rate. While this phenomenon endows the material with an unusual feature, more efforts are highly demanding for the full understanding of this performance. Herein, we systematically investigate the hydrophobic hydrogels’ swelling kinetics by screening the organic solvent dependence, polymer effect, and temperature impact. It is revealed that the chemical structure of gels greatly influences the swelling kinetics. The higher the networks’ hydrophobicity, the slower the swelling kinetics. Meanwhile, organic solvents demonstrate a limited effect on the dynamic swelling performance. Moreover, higher temperature significantly accelerates the whole volume change process. Based on the swelling performance, we further develop hydrogel-based soft devices with timeprogrammable two-dimensional and three-dimensional shape-shifting performances. 展开更多
关键词 Hydrophobic hydrogels Swelling kinetics Shape-shifting device TIME-DEPENDENCE Thermodynamically unstable state
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