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961.
赵东 《地质与勘探》2022,58(6):1261-1270
为合理实现炭质板岩隧道的大变形分级,以木寨岭隧道大变形段五个监测断面的监测成果为基础,利用极限位移准则实现其现状分级,利用递进优化思路构建隧道大变形预测模型,并根据外推预测结果的速率均值实现大变形发展趋势分级。结合隧道大变形的现状分级和发展趋势分级结果,开展隧道大变形发育程度的综合评价。实例分析表明:在大变形现状分级过程中,不同位置处的大变形等级存在一定差异,其中,以DK180+960 m断面的大变形程度相对最为严重,属Ⅴ级-极严重,其余四个断面的大变形等级为Ⅳ级-严重;通过发展趋势分级,得DK180+940 m断面和DK180+960 m断面的大变形发展趋势等级为2级,其余三个监测断面属1级,均具持续增加趋势,趋于不利方向发展。结合前述大变形现状分级和发展趋势分级结果,综合得出DK180+960 m断面的大变形最为不利,其次是DK180+940 m断面,其余三个断面的大变形程度相似。因此,可根据断面的大变形综合评价结论来制定具有针对性的防治措施,以达到优化现场防治措施的目的。  相似文献   
962.
超长系列的降水资料是分析气候变化和预估未来区域水安全形势的重要支撑,但目前观测资料只有几十年时间尺度,利用相关历史文献资料进行系列重建是延长现有观测资料的主要手段。基于《中国近五百年旱涝分布图集》和1959年以来实测降水资料,重建1470—2019年中国东部季风区的长序列降水数据,分析近550 a以来区域降水变化规律,剖析气候自然变异规律和人为气候变化对历史降水的影响,并通过CMIP6中等分辨率气候系统模式下的4种情景降水数据预估未来降水变化趋势。研究表明:①东部季风区降水年际分布不均,有明显的丰枯变化,1470—1691年整体处于枯水期,1692—1924年处于丰水期,1925年至今处于枯水期,存在准181 a周期;② 1991年后人为气候变化的影响已经显现,海河、黄河下游和长江流域部分降水倾向率发生显著变化,东部季风区总体降水增加趋势加快;③在未来气候变化情景下多年平均降水量较基准期(1961—1990年)显著增加,季节性变化加大,区域旱涝风险加剧。由于未来气候情景的不确定性,未来降水趋势预测的可信度尚未可知,需要进一步增强风险分析。  相似文献   
963.
我国的岩相古地理研究大致经历了三个大的发展时期。初期阶段:20世纪80年代以前,主体是以古生物地层学的理论为指导编制出版大区域的古地理图集,集中反映海陆分布,岩相内容较少,较少的学者开展了岩相古地理研究,揭开了由古地理图向岩相古地理图转变的序幕。快速发展阶段:20世纪80年代至2000年,总体上是以大地构造学、古生物地层学、沉积学等理论为指导,开展了大量的岩相古地理研究与编图工作,并采取多种编图思路和方法编制大区域的岩相古地理图,是我国岩相古地理研究与编图大发展时期,形成了丰硕的理论和实践成果。编制的图件不仅尽量体现活动性古地理的学术前沿,而且更多的是强化实用性,聚焦对沉积层控矿产远景预测和油气勘探的支撑和指导作用。现代阶段:2000年至今,岩相古地理研究与编图聚焦支撑油气地质调查与勘探成为了这段时间的主题,采取不同的编图思路和方法编制出版了大区域的岩相古地理图。具有三大特点:一是编图资料丰富,技术方法新颖;二是编图思路先进,体现了以构造为主线,岩相古地理恢复为核心,支撑服务油气为根本的研究思路;三是以服务油气目标为特色。由于大数据、人工智能等信息技术突飞猛进促进大数据岩相古地理向前发展,数字岩相古地理必将推动我国在岩相古地理编图思路和技术方法的创新,提升支撑服务沉积矿产找矿和油气勘探开发的精准性和预测性水平。  相似文献   
964.
The Early Cretaceous–Early Eocene granitoids in the Tengchong Block record the evolutionary history of the Mesozoic-Cenozoic tectono-magmatic evolution of Eastern Tethys. (a) The Early Cretaceous granitoids with relatively low (87Sr/86Sr)i ratios of 0.7090–0.7169 and εNd(t) values of ?9.8 to ?7.8 display metaluminous, calc-alkaline dominated by I-type granite affinity and hybrid mantle–crust geochemical signatures. They may have been derived from melting of the subducted Meso-Tethyan Bangong-Nujiang oceanic crust with terrigenous sediments in an arc-continent collisional setting. (b) The Late Cretaceous–Paleocene granitoids with relatively high (87Sr/86Sr)i ratios of 0.7109–0.7627, and εNd(t) values of ?12.1 to ?7.9 exhibit metaluminous to peraluminous, calc-alkaline dominated by S-type granite affinity and hybrid Lower–Upper crust geochemical signatures, which may be originated from partial melting of the Meso-Proterozoic continental crust in the collision setting between the Tengchong Block and Baoshan Block. (c) The Early Eocene granitoids have metaluminous, calc-alkaline I-type and S-type granites dual affinity, with relatively high (87Sr/86Sr)i ratios of 0.711–0.736, εNd(t) values of ?9.4 to ?4.7, showing crust-mantle mixing geochemical signatures. They may have been originated from partial melting of the late Meso-Proterozoic upper crustal components mixed with some upper mantle material during the ascent process of mantle magma caused by the subduction of the Neo-Tethyan Putao–Myitkyian oceanic crust, and collision between the Western Burma Block and the Tengchong Block. It is these multi-stage subductions and collisions that caused the spatial and temporal distribution of the granitic rocks in the Tengchong Block.  相似文献   
965.
This study presents new geochronological and geochemical data for Early Cretaceous volcanic rocks in the southern margin of the North China Craton (NCC), to discuss the crust–mantle interaction. The studied rocks include pyroxene andesites from Daying Formation, hornblende andesites and andesites from Jiudian Formation, and rhyolites from a hitherto unnamed Formation. These rocks formed in Early Cretaceous (138–120 Ma), with enrichment in light rare earth elements (REE), depletion in heavy REE and arc-like trace elements characteristics. Pyroxene andesites show low SiO2 contents and enriched Sr–Nd–Pb–Hf isotopic compositions, with orthopyroxene phenocryst and Paleoproterozoic (2320–1829 Ma) inherited zircons, suggesting that they originated from lithospheric mantle after metasomatism with NCC lower crustal materials. Hornblende andesites have low SiO2 contents and high Mg# (Mg# = 100 Mg/(Mg + Fe2+)) values, indicating a lithospheric-mantle origin. Considering the distinct whole-rock Sr isotopic compositions we divide them into two groups. Among them, the low (87Sr/86Sr)i andesites possess amount inherited Neoarchean to Neoproterozoic (2548–845 Ma) zircons, indicating the origin of lithospheric mantle with addition of Yangtze Craton (YC) and NCC materials. In comparison, the high (87Sr/86Sr)i andesites, with abundant Neoarchean–Paleozoic inherited zircons (3499–261 Ma), are formed by partial melting of lithospheric mantle with incorporation of NCC supracrustal rocks and YC materials. Rhyolites have extremely high SiO2 (77.63–82.52 wt.%) and low total Fe2O3, Cr, Ni contents and Mg# values, combined with ancient inherited zircon ages (2316 and 2251 Ma), suggesting an origin of NCC lower continental crust. Considering the presence of resorption texture of quartz phenocryst, we propose a petrogenetic model of ‘crystal mushes’ for rhyolites prior to their eruption. These constraints record the intense crust–mantle interaction in the southern margin of the NCC. Given the regional data and spatial distribution of Early Cretaceous rocks within NCC, we believe that the formation of these rocks is related to the contemporaneous far-field effect of the Paleo-Pacific Plate.  相似文献   
966.
Polymetamorphic units are important constituents of continent–continent collisional orogens, and rift metamorphic assemblages are often overprinted by subsequent metamorphism during subduction and collision. This study reports the metamorphic conditions and evolution of the Dorud–Azna metamorphic units in the central part of the Sanandaj–Sirjan zone (SSZ), Iran. Here, new geothermobarometry results are integrated with 40Ar/39Ar mineral and Th–U–Pb monazite and thorite ages to provide new insight of polyphase metamorphism in the two different basement units of the SSZ, the lower Galeh-Doz orthogneiss and higher Amphibolite-Metagabbro units. In the Amphibolite-Metagabbro unit, staurolite micaschist underwent a prograde P–T evolution from 640 ± 20 °C/6.2 ± 0.8 kbar in garnet cores (M1) to 680 ± 20 °C/7.2 ± 1.0 kbar in garnet rims (M2). Three Th–U–Pb monazite ages of 306 ± 5 Ma, 322 ± 28 Ma and 336 ± 39 Ma from the garnet-micaschists testify the Carboniferous age of M1 metamorphism. In the same unit, the metagabbro records P–T conditions of 4.0 ± 0.8 kbar and 580 ± 50 °C in the (magmatic) amphibole core (Late Carboniferous intrusion) to 7.5 ± 0.7 kbar and 700 ± 20 °C in the amphibole rim indicating a prograde P–T path during subsequent burial (M1). New 40Ar/39Ar dating of white mica from the staurolite micaschist yielded a staircase pattern ranging from 36 ± 12 Ma to 170 ± 2 Ma. This implies polymetamorphism with a minimum Late Jurassic cooling age through the Ar retention temperature of ca. 425 ± 25 °C after M2 metamorphism and a Paleogene low-grade metamorphic overprint (M3), while 40Ar/39Ar white mica dating of garnet micaschist yielded a plateau age of 137.84 ± 0.65 Ma. We therefore interpret the amphibolite-grade metamorphism M2 to have predated 170 Ma and is likely between 180 and 200 Ma. Furthermore, it is overprinted at about 36 Ma under retrogressive low-grade M3 metamorphism (at temperatures of ~350–240 °C) during final shortening and exhumation. In the underlying Galeh-Doz unit, the Panafrican granitic orthogneiss intruded at P–T conditions of 3.2 ± 4 kbar and 700 ± 20 °C, then it was metamorphosed and deformed at 600 ± 50 °C and 2.0 ± 0.8 kbar (metamorphic stage M1) prior to Late Carboniferous intrusion of mafic dikes. 40Ar/39Ar dating of amphibole from the Galeh-Doz orthogneiss gave plateau-like steps between 260 and 270 Ma, representing the age of cooling through ca. 500 °C after the M1 metamorphic event. Interestingly, the results of this study demonstrate polyphase metamorphic histories in both the Galeh-Doz orthogneiss and Amphibolite-Metagabbro units at different P–T conditions and final thick-skinned Paleogene emplacement of these units over the underlying low-grade metamorphic June Complex. Our findings suggest that both units are affected by high-T/low-P Late Carboniferous orogenic metamorphism along with the bimodal magmatism, as result of rifting. We propose that the Early Jurassic amphibolite-grade M2 metamorphism of the SSZ is correlated with the initial subduction of the Neotethyan Ocean. Eventually, the investigated units reflect various stages of a Wilson cycle, from rifting to initiation of the subduction in final plate collision.  相似文献   
967.
韩鹏  王龙  万晓锋 《江苏地质》2023,47(1):66-72
常规音频大地电磁法,如EH-4电磁成像系统,在资料处理时通常不能有效分辨部分异常区域。以青海海北某公路隧道勘探为例,研究趋势面分析法在音频大地电磁测深中的应用。结果表明:通过拟合趋势面方程,可获取研究区内任一位置的视电阻率值,在拟合度较高的情况下可对区外的视电阻率值进行预测与估计;野外观测数据通常受随机因素的影响,可通过趋势面分析法对随机噪声进行平滑滤波处理;剩余值反映了视电阻率异常特征,绘制剩余值等值线图可以在去除区域背景视电阻率值后对异常区域进行凸显。音频大地电磁探测成果与趋势面分析法结合能更充分地利用地质信息。  相似文献   
968.
The differences in the influences of the North Atlantic Oscillation (NAO) on the air–sea CO_2 fluxes (f CO_2) in the North Atlantic (NA) between different seasons and between different regions are rarely fully investigated. We used observation-based data of f CO_2, surface-ocean CO_2partial pressure (p CO_(2sea)), wind speed and sea surface temperature(SST) to analyze the relationship between the NAO and f CO_2 of the subtropical and subpolar NA in winter and summer on the interannual time scale. Based on power spectrum estimation, there are significant interannual signs with a 2–6 year cycle in the NAO indexes and area-averaged f CO_2 anomalies in winter and summer from 1980 to 2015. Regression analysis with the 2–6 year filtered data shows that on the interannual scale the response of the f CO_2 anomalies to the NAO has an obvious meridional wave-train-like pattern in winter, but a zonal distribution in summer. This seasonal difference is because in winter the f CO_2anomalies are mainly controlled by the NAO-driven wind speed anomalies, which have a meridional distribution pattern, while in summer they are dominated by the NAO-driven SST anomalies, which show distinct zonal difference in the subtropical NA. In addition, in the same season, there are different factors controlling the variation of p CO_(2sea)in different regions. In summer, SST is important to the interannual variation of p CO_(2sea)in the subtropical NA, while some biogeochemical variables probably control the p CO_(2sea) variation in the subpolar NA.  相似文献   
969.
This study investigates the recent extreme temperature trends across 19 stations in the Klang Valley, Malaysia, over the period 2006-16. Fourteen extreme index trends were analyzed using the Mann-Kendall non-parametric test, with Sen’s slope as a magnitude estimator. Generally, the annual daily mean temperature, daily mean maximum temperature, and daily mean minimum temperature in the Klang Valley increased significantly, by 0.07°C yr~(-1), 0.07°C yr~(-1)and 0.08°C yr~(-1),respectively. For the warm temperature indices, the results indicated a significant upward trend for the annual maximum of maximum temperature, by 0.09°C yr~(-1), and the annual maximum of minimum temperature, by 0.11°C yr~(-1). The results for the total number of warm days and warm nights showed significant increasing trends of 5.02 d yr~(-1)and 6.92 d yr~(-1),respectively. For the cold temperature indices, there were upward trends for the annual minimum of maximum temperature,by 0.09°C yr~(-1), and the annual minimum of minimum temperature, by 0.03°C yr~(-1), concurrent with the decreases in the total number cold days (TX10P), with-3.80 d yr~(-1), and cold nights (TN10P), with-4.33 d yr~(-1). The 34°C and 37°C summer days results showed significant upward trends of 4.10 d yr~(-1) and 0.25 d yr~(-1), respectively. Overall, these findings showed upward warming trends in the Klang Valley, with the minimum temperature rate increasing more than that of the maximum temperature, especially in urban areas.  相似文献   
970.
本文采用乌鲁木齐市国家基准气象站463站的逐日平均、逐日最低和逐日最高气温资料,分析了乌鲁木齐市1976-2017年气温变化趋势和对四季的影响。结果表明:乌市气温有明显上升的趋势,年平均气温的线性增温速率为0.50℃/10a,1997年出现了最暖年,1976年以来最暖的10 a均出现在20世纪末至今;年平均最低气温升温趋势最为明显,倾向率为0.77℃/10a,上升速率约是年平均最高气温的2.5倍;气温上升导致春季和夏季的开始日期提前明显、秋季和冬季开始日期有推后的趋势,使得夏季明显延长,延长率为5.9d/10a,近42a来共增加25d,其他季节则有不同程度的缩短,其中冬季缩短最为明显,缩短率为-3.6d/10a,近42a来共缩短了15d;各季节开始日期不仅与年平均气温相关性很好,且开春期、入夏期分别与3月和6月平均气温显著负相关;入秋期与入冬期分别与9月和11月气温呈显著正相关;夏季和冬季的长度也与年平均气温显著相关,当年平均气温每上升1℃时,夏季将延长6d,而冬季则会缩短7 d。  相似文献   
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