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991.
为对比分析5·12汶川地震和3·11东日本大地震的加速度反应谱和结构地震反应特征,挑选132条汶川地震和404条东日本大地震中Ⅱ类场地上的水平向加速度记录,进行统计分析。根据这两次大地震的标准加速度反应谱,给出了拟合谱曲线。将所得拟合谱作为需求谱,分别对6层框架结构和20层框架结构进行了Pushover分析,比较在上述两次大地震下不同框架结构地震反应的差异。结果表明:东日本大地震记录比汶川地震记录具有较明显的长周期地震动特征;两次地震记录的区别在高层框架结构的地震反应上表现得更加明显,东日本大地震记录对具有较长自振周期的结构的地震反应影响更为显著。 相似文献
992.
993.
新地震区划图地震构造区划分的原则和方法——以中国东部中强地震活动区为例 总被引:1,自引:1,他引:0
在新编全国地震区划图潜在震源区划分工作中,采用了三级划分的技术思路,即在地震统计区内先划分出地震构造区,以控制地震统计区内地震构造和地震活动的差异性,然后,在地震构造区内再进行潜在震源区划分。地震构造区划分是新编全国地震区划图潜在震源区划分工作中的一个关键环节。本文论述了地震构造区的定义、作用、划分原则和依据等。介绍了中国东部地区地震构造区划分方案,并以东北地震区和华南沿海地震带为例,对地震构造区划分方案进行了详细论述。 相似文献
994.
The Hejiazhuang pluton is located in the South Qinling Tectonic Belt(SQTB)in the north side of the Mianxian-Lueyang Suture Zone,and consists dominantly of granodiorites.LA-ICP-MS zircon U-Pb dating and Lu-Hf isotopic analyses reveal that these granodiorites of the Hejiazhaung pluton emplaced at~248 Ma,and show a large variation in zirconεHf(t)values from4.8 to 8.8.These granodiorite samples are attributed to high-K to mid-K calc-alkaline series,and characterized by high SiO2(66.6%–70.0%),Al2O3(15.04%–16.10%)and Na2O(3.74%–4.33%)concentrations,with high Mg#(54.2–61.7).All samples have high Sr(627–751 ppm),Cr(55–373 ppm)and Ni(17.2–182 ppm),but low Y(5.42–8.41 ppm)and Yb(0.59–0.74 ppm)concentrations with high Sr/Y ratios(84.90–120.66).They also display highly fractionated REE patterns with(La/Yb)N ratios of 18.9–34.0 and positive Eu anomalies(δEu=1.10–2.22)in the chondrite-normalized REE patterns.In the primitive mantle normalized spidergrams,these samples exhibit enrichment in LILEs but depletion in Nb,Ta,P and Ti.These geochemical features indicate that the granodioritic magma of the Hejiazhuang pluton was derived from the partial melting of hybrid sources comprising the subducted oceanic slab and sediments,and the melts were polluted by the mantle wedge materials during their ascent.The emplacement ages and petrogenesis of the Hejiazhuang pluton prove that the initial subduction of the Mianlue oceanic crust occurred at~248 Ma ago,and the SQTB was still under subduction tectonic setting in the Early Triassic. 相似文献
995.
XU Jian 《中国科学:地球科学(英文版)》2014,57(4):791-801
The Indonesian Throughflow (ITF) links upper ocean waters of the west Pacific and Indian Ocean, modulates heat and fresh water budgets between these oceans, and in turn plays an important role in global climate change. The climatic phenomena such as the East Asian monsoon and El Niño-Southern Oscillation (ENSO) exert a strong influence on flux, water properties and vertical stratification of the ITF. This work studied sediments of Core SO18462 that was retrieved from the outflow side of the ITF in the Timor Sea in order to investigate response of the ITF to monsoon and ENSO activities since the last glacial. Based on Mg/Ca ratios and oxygen isotopes in shells of planktonic foraminiferal surface and thermocline species, seawater temperatures and salinity of both surface and thermocline waters and vertical thermal gradient of the ITF outflow were reconstructed. Records of Core SO18462 were then compared with those from Core 3cBX that was recovered from the western Pacific warm pool (WPWP). The results displayed that similar surface waters occurred in the Timor Sea and the WPWP during the last glacial. Since ~16 ka, an apparent difference in surface waters between these two regions exists in salinity, indicated by much fresher waters in the Timor Sea than in the WPWP. In contrast, there is little change in difference of sea surface temperatures (SSTs). With regard to thermocline temperature (TT), it increased until ~11.5 ka since the last glacial, and then remained an overall unchanged trend in the WPWP but continuously decreased in the Timor Sea towards the late Holocene. Since ~6 ka, thermocline waters have tended to be close to each other in between the Timor Sea and the WPWP. It is indicated that intensified precipitation due to East Asian monsoon and possible ENSO cold phase significantly freshened surface waters over the Indonesian Seas, impeding the ITF surface flow and in turn having enhanced thermocline flow during the Holocene. Consequently, thermocline water of the ITF outflow was cooling and thermocline was shoaling towards the late Holocene. It is speculated that, in addition to strengthening of East Asian winter monsoon, increasing ENSO events during the late Holocene likely played an important role in influencing thermocline depth of the ITF outflow. 相似文献
996.
基于CMIP5的东亚地区降雪量变化特征分析 总被引:1,自引:0,他引:1
利用JMA的JRA-55降雪量及CMIP5的6个模式模拟的降雪量资料, 分析了东亚地区降雪量年变化特征及年际变化特征. 结果表明: 东亚地区降雪量在1958-2004年期间具有明显的年际变化特征及区域分布特征; 降雪主要集中在11月至翌年的4月, 这6个月中降雪量占年总降雪量的82%; 年际变化特征呈现出一种波动变化略有增加的趋势, 但是增加的幅度有所不同. 从区域分布特征来看, 东亚地区降雪主要分布在东北亚、青藏高原及新疆等3个区域. CMIP5的6个模式对东亚区域及其子区域东北亚、青藏高原、新疆1850-2004年降雪量年际变化特征的模拟差异较大. 多模式集合预报的结果表现为, 在过去155 a(1850-2004年)东亚区域降雪量呈现明显减小趋势, 东北亚和青藏高原降雪量为波动略有减小趋势, 新疆降雪量为明显增加趋势. 相似文献
997.
东昆仑东段纳赤台岩群变沉积岩地球化学特征及构造意义 总被引:1,自引:0,他引:1
东昆仑东段出露的下古生界纳赤台岩群为一套变沉积-火山岩系,是该地区早古生代构造演化的重要物质记录。岩石学及地球化学特征表明,纳赤台岩群变沉积岩主要岩石类型有绢云石英片岩、二云石英片岩、长石石英片岩和绿泥绢云片岩,局部夹有少量大理岩、片麻岩和石英岩,其原岩主要为砂岩、杂砂岩及少量泥质岩。岩石具较高的SiO2(平均为69.82%)、Sr(平均为559.60×10-6)、Ba(平均为194.68×10-6)含量,微量元素含量与大陆上地壳丰度很相近,轻重稀土分异明显、轻稀土富集而重稀土亏损、有明显的负Eu异常,反映出源区的物质成分主要为长英质,来源于上地壳,很少有地幔物质的加入。化学蚀变指数为49.70~75.95、成分变异指数为1.32~2.01,表明物源区风化程度较低,处于寒冷、半干旱的气候区,是活动构造带的首次沉积。变沉积岩形成于活动大陆边缘-大陆岛弧环境,与共生的变火山岩地球化学特征所指示的构造环境一致,共同记录了早古生代原特提斯洋向北俯冲导致东昆仑地区拉张形成弧后小洋盆的地质过程,进一步证实东昆南构造带的早古生代板块体制应该属于活动大陆边缘。 相似文献
998.
基于对珠江口盆地东部新近系下中新统珠江组碳酸盐岩1483块常规及铸体薄片显微特征的观察、描述以及古生物特征和岩石学特征的研究,依据碳酸盐岩颗粒组分和结构构造等特点,将珠江组碳酸盐岩划分为8个主要微相类型,并根据灰岩颗粒类型及相对含量的多少,将其进一步细分为22个次一级的微相类型。根据这些微相类型在纵向上的组合特征与环境意义,可在珠江组碳酸盐岩中识别出碳酸盐岩缓坡、局限台地、开阔台地、台地边缘滩、台地边缘礁、台地前斜坡等6个沉积相带。这些沉积相的纵向演化规律揭示了东沙隆起在早中新世海平面上升过程中经历了由碳酸盐岩缓坡到台地的沉积演化历程。 相似文献
999.
济州岛西南泥质区粒度组分变化的古环境应用 总被引:14,自引:1,他引:13
利用激光粒度仪对位于东海陆架济州岛西南泥质区的B2孔进行了沉积物粒度分析,根据标准偏差变化检出了B2孔含有4个粒度组分:〉65.6、65.6~10.5、10.5~1.3和〈1.3μm,其中〉65.6μm粗组分含量很低,主要是以底栖有孔虫为主的生源沉积.各组分平均粒径和粒度含量随孔深的变化显示了65.6~10.5μm组分在B2孔含量较高(21%~30%),变化最明显,是该孔对环境变化最敏感的粒度组分.研究表明该敏感组分的粒度含量和平均粒径变化主要受东亚冬季风的强弱变化制约,其变化恢复的近2ka来东亚冬季风变化和中国东部气候变化序列具有很好的一致性,证明65.6~10.5μm粒度组分可以作为东亚冬季风的替代指标. 相似文献
1000.
WU Genyao Institute of Geology Geophysics Chinese Academy of Sciences Beijing E-mail: dzkx@mail.igcas.ac.cn 《《地质学报》英文版》2005,79(4):507-518
The Tan-Lu Fault was once a transform fault in the Paleotethys, west of which was the Qinling-Dabie Ocean separating the Yangtze Craton from the North China Craton, and east of which was the Su-Lu Ocean separating the Su-Wan Block from the Jiao-Liao Craton. The Qinling-Dabie Ocean closed in the Indosinian orogeny, which created the China-Southeast Asia Subcontinent, with the Tan-Lu Fault becoming a marginal shear zone along the newly-formed amalgamated subcontinent. The Su-Lu Ocean subducted partly in the Indosinian.orogeny, but not closed. In the Jurassic and Early Cretaceous, the Su-Wan Block drifted northwards with subduction of the Su-Lu Ocean and moved westwards to converge the subcontinent by sinistral sheafing of the ENE-striking fractures. The Su-Lu Ocean finally closed and the Su-Wan Block collided with the Jiao-Liao Craton in the Early Cretaceous, which constituted a part of the magnificent interplate Yanshanides. The interplate orogeny rejuvenated the fossil sutures and deep fractures, as well as the Indosinian orogen, and the intraplate (intracontinental) Yanshanian orogeny occurred in the subcontinent. The East Asia Yanshanides, consisting of the interplate orogens in the outer side and the intraplate orogens in the inner side, collapsed quickly in the latest Early Cretaceous and Late Cretaceous. The eastern China area entered a tensile period from the Eogene, and the tectonic differentiation between the central and eastern China areas since the Jurassic was further strengthened. 相似文献