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1.
青藏高原及其邻区地壳上地幔S波速度结构   总被引:32,自引:2,他引:32  
利用CDSN、IRIS、GEOSCOPE等台网 33个数字台站及部分数字流动台的长周期面波资料 ,采用改进的Occam网格反演方法 ,在获得中国大陆及其邻近区域 (5°~ 5 5°N ,6 8°~ 15 0°E) 1°× 1°的 7~ 184s周期Rayleigh波群速度频散的基础上 ,进一步反演青藏高原及邻区 (2 0°~ 40°N ,75°~ 10 5°E)内每个经纬度节点介质的S波速度结构 ,获得了 0~ 42 0km深度地壳上地幔的三维速度分布。研究结果显示 :青藏高原不但具有厚壳 (6 0~ 70km)和厚岩石圈 (超过 2 0 0km) ,而且高原深部结构和速度分布存在明显的横向变化和分区特征。  相似文献   

2.
中国大陆现今构造运动的GPS速度场与活动地块   总被引:141,自引:11,他引:130  
张培震  王琪  马宗晋 《地学前缘》2002,9(2):430-441
GPS观测结果给出了在欧亚参考框架下周边板块的运动状态 ,印度板块的运动方向约NE2 0° ,速度是 40~ 42mm/a ;北美板块的运动方向约NW 2 80°~ 2 90° ,速度是 2 1~ 2 3mm/a ;菲律宾板块的运动方向是NW 2 90°~ 310° ,速度是 37~ 45mm/a ;哈萨克—西伯利亚地盾的运动方向约NE130° ,速度是 3~ 5mm/a。GPS所揭示的中国大陆现今运动场清晰地表现出了以活动地块为单元的分块运动特征。文中给出了各主要活动地块的运动方向和速度。大部分活动地块内部结构完整 ,以整体性的运动为主 ;个别活动地块内部发生构造变形 ,地块的整体性不好。中国大陆以活动地块为单元的现今构造变形可能与大陆岩石圈的结构和性质有关 ,上地壳以脆性变形为主 ,下地壳和上地幔以粘塑性的流变为特征 ,从底部驱动着上覆脆性地块的整体运动。  相似文献   

3.
华北东部上地幔破裂带   总被引:5,自引:0,他引:5       下载免费PDF全文
利用天然地震的走时和S波震相的层析成像方法可以提供上地幔S波速度扰动精细图像。我们对华北东部(32°~44°N,114°~126°E)进行了高分辨率S波地震层析成像研究,揭示了苏鲁及环渤海地区上地幔速度结构的差异,为研究该区域深部构造演化提供新的地球物理证据和制约。本次成像取得的最醒目的成果是揭示了由波速剧烈变化指示的两条上地幔破碎带,它们分别出现在渤海湾裂谷区与苏鲁超高压变质带下方。苏鲁超高压变质带下方上地幔破碎带包含多个有序排列的高速团块,推测与扬子走滑并向前俯冲、以及前锋超高压变质块体拆沉及折返作用有关。地幔地震S波速的成像结果支持华北东部渤海湾地区发育地幔热羽柱体系的观点,并对地幔热羽柱的鉴识提供了新的标识。  相似文献   

4.
利用断裂带的共轭节理、断面擦痕和阶步及显微构造反演恩施断裂 3个主要变形期的运动学和动力学特征。燕山主期的最大水平挤压应力方向变化范围为 30 0°~ 34 0° ,差异应力在 15 0~ 180MPa之间 ;燕山晚期的最大水平挤压应力方向为 35 0°~ 10° ,差异应力为 12 0MPa左右 ;喜马拉雅主期的最大水平主压应力方向在 2 0°~ 6 0°之间 ,差异应力为 6 0~ 10 0MPa。恩施断裂的分段结构主要受区域动力学背景和断层自组织结构的双重控制。在燕山主期 ,主要受区域动力学变形背景控制 ;而在燕山晚期和喜马拉雅主期 ,则主要受断层自身结构的自组织反馈行为控制  相似文献   

5.
白云洞是云南乃古石林地区一个长达380km的岩溶洞穴,位于昆明东南70km。溶洞通道的总体方向为N110°~120°E,N0°~10°W,裂隙方向为N30°~40°W,N20°~30°W。溶洞发育于厚层的下二叠统栖霞组,水流发育,正处于近潜水位阶段。溶洞沉积中存在大量  相似文献   

6.
谭建国  洪毅  张所邦  王勇 《探矿工程》2022,49(5):163-170
为了研究和改善油气资源钻井工程中高压管汇系统受到流固体冲蚀的影响,本文根据近井口常规管汇布置情况,建立了0°、45°、90°三种角度弯管模型,并根据计算流体力学基本理论,结合实际工况,对压裂弯管内部流场进行数值模拟,最后设计了0°与45°压裂安装角度管汇布置结构,并根据此3种弯管安装角度及弯管材料选用,进行了室内冲蚀试验研究,得出了如下结论:(1)在不同的安装角度下,随着冲次增大,流体出口速度越大,在任何安装角度下,弯管部位会发生较大的速度波动,因此速度波动太大弯管部位会受到严重冲蚀;(2)高速流体冲蚀区域主要分布在近井口压裂头部位的管道入口位置,在两种错位情况下,管汇整体流体速度由出口到入口逐渐变小;(3)压裂头部位5个出口部位存在较大的冲蚀速度,速度和压力呈现阶梯状的变化,中间有压力和速度稳定时期,速度大的位置压力小。当安装角度为0°和45°时,流体的冲击速度会较小;(4)42CrMo防冲蚀能力较强,管道材料选用42CrMo有助于延长管道使用寿命。  相似文献   

7.
为了降低定向井摩阻扭矩,提高钻井速度,针对地质特点和钻井难点,建立了井眼轨道和岩石可钻性回归计算模型。通过五段制轨道剖面的优化,最优井眼曲率为(2.85°~3°)/30 m、最大井斜角为30°;技术套管下至Sadi层8~15 m,确保了S型定向井安全钻进,裸眼内摩阻系数由0.52降至0.35,套管内摩阻系数由0.35降至0.28;Rus软硬夹层优选试验KM533复合钻头,解决了常规PDC钻头磨损快、牙轮钻头机械钻速低的问题。通过上述3项技术的研究与应用,鲁迈拉S型定向井实际顶驱扭矩降低30%以上,钻头使用数量降低2.7只,钻井周期缩短18.58 d。  相似文献   

8.
青藏高原全新世植被的时空分布   总被引:11,自引:2,他引:11  
唐领余  李春海 《冰川冻土》2001,23(4):367-374
根据青藏高原 30个点湖泊的孢粉记录综合研究显示 :在进入全新世之前 (12kaBP以前 )除最东南部外 ,高原从东到西均发育为荒漠草原植被 .全新世早期 (12~ 9.0kaBP)高原东南部 (10 4°~ 98°E)为落叶阔叶林 /针阔叶混交林 ,季风已进入本区 ,气温比前期上升 2~ 4°C ,降水波动于 35 0~ 5 5 0mm之间 .中部 (98°~ 92°E)为草甸或灌丛草甸 ,再向西至 80°E左右为草原植被 ,气候寒冷干燥 ,平均气温比现在低 4.5~ 5 .5℃ .最西部 10 .5~ 9.9kaBP出现相当于欧洲新仙女木气候倒转事件 .全新世中期 (9.0~ 3.2kaBP)高原由东向西古植被依次发育为针阔混交林或硬叶阔叶林 (10 4°~ 98°E)→针阔混交林 (98°~ 80°E)→灌丛草甸→草原 (92°~ 80°E) .中期气候比早晚期温暖湿润 ,东南部 1月份气温高于现在 3℃ ,年降水量比现今多 2 5 0mm以上 .中西部气候温暖湿润 ,出现高湖面期 ,年均温高出现在 5℃以上 ;全新世晚期 (3.2kaBP以后 )由东向西古植被依次为硬叶阔叶林→针阔混交林→草甸→草原→荒漠 ,气温降水呈非线性下降 ,越向西下降幅度越大 .东南部 1月份气温比中期下降 4~ 4.5℃ ,年降水少 35 0mm ,东北部最冷月气温比中期下降 8℃左右 .中西部严重干旱 ,湖面降低 ,湖水变咸  相似文献   

9.
大水沟碲矿床矿脉特征及包裹体类型   总被引:3,自引:0,他引:3  
大水沟碲矿床产出于志留系通化群含炭泥质条带白云石大理岩夹钙质基性火山岩[1] 。这些岩石经历了晚三叠世末的区域绿片岩相变质作用和滑动剪切作用。矿区内地层走向为 32 0°~ 350° ,倾向 50°~80° ,倾角 10°~ 30°。矿区主要发育三期穿层节理。第一期北北东向和北北西向 ,共轭轴缓倾 ,其中北北东组形成等间距破裂带 ,并且直接控制矿脉的产出。第二期北东向和北西向 ,第三期近南北向和东西向 ,均破坏矿体。矿区内存在以下 4类脉体 :( 1)早期白云石脉产于志留系角闪片岩和角闪石榴片岩地层中 ,走向与地层斜交 (早期白云石脉走向 0°~…  相似文献   

10.
天地冰川位于四川绵竹市天池乡 ,属于第四纪中早期的冰川遣迹 ,距今 1~ 2Ma。天池冰川位于龙门山褶断带中段太平推覆构造体的天池向斜中 ,天池向斜呈纺缍形 ,轴的走向北东 ,两翼由二叠系地层组成 ,中部是三叠系下统飞仙关组地层。北西翼地层倒转倾向北西、倾角 5 0°~ 70° ,南东翼倾向北西、倾角 4 5°~ 6 0° ,向斜的中西部褶皱呈斜卧的∑形 ,天池冰川受天地向斜中的高家坪向斜控制 ,冰川长近 5km ,宽 10 0~ 10 0 0m ,走向北东 4 0° ,根据它的结构特征可分为三段 ,即冰川源头段 ,中部冰碛丘陵段 ,前缘冰舌、冰槽谷段。冰川源头…  相似文献   

11.
Margins of old continental lithosphere are likely prone to ongoing modification processes. Therefore, constraining detailed structures beneath the margin can be essential in understanding the evolution of the continental lithosphere. The eastern margin of the Eurasian plate is a natural laboratory that allows us to study the strong effects from multiple episodes of continental collision and subduction of different oceanic plates since their formation. To reveal the detailed evolution of cratons at their margins, we describe, for the first time, the upper mantle structures beneath the southern Korean Peninsula (SKP) based strictly on teleseismic relative arrival time data from densely deployed local seismic arrays, which allows us to constrain the details of the lithospheric structures beneath the Archean-Proterozoic basement. We imaged a thick (~150 km) high-velocity anomaly mainly beneath the Proterozoic Yeongnam Massif with large velocity contrasts (dlnVp ≈ 4.0% and dlnVs ≈ 6.0%) at its boundaries, suggesting the presence of a long-lasting cratonic root in the southwestern SKP. On the other hand, low-velocity anomalies were found beneath the Proterozoic Gyeonggi Massif, Gyeongsang arc-back-arc basin, and along the eastern margin of the SKP, indicating significantly modified regions. The possible existence of a remnant cratonic root beneath the SKP and contrasting lithospheric structures across the different Precambrian massifs suggests the highly heterogeneous modification of cratonic lithosphere at the eastern Eurasian plate margin. Strong velocity reductions, which indicate a thermally elevated upper mantle potentially with partial melts, correspond to areas of Cenozoic basalts, high surface heat flow, and high topography along the eastern KP margin. We interpret this coincidence as a result of recent reactivation of a craton margin, which is controlled by intense interaction between the convective upper mantle and heterogeneous continental lithosphere.  相似文献   

12.
长江中下游地区成矿深部动力学机制:远震层析成像证据   总被引:11,自引:5,他引:6  
长江中下游成矿带是我国东部重要的矿产资源基地。前人研究认为该地区的成矿作用与中生代大规模岩浆活动密切相关,但关于成矿的深部动力学机制仍存在着分歧。本研究利用远震层析成像方法获得了研究区下方整个上地幔内的三维速度结构,采取以下措施:(1)46个固定台站和67个流动台站记录的678个远震事件的17000余条P波波形;(2)利用改进的多道互相关技术直接从波形数据中提取相对走时残差信息,提高了数据处理的精度和效率;(3)地壳校正消除地壳不均匀性的影响;(4)检测板测试最佳网格间隔,水平方向为0.5°×0.5°,垂向为50~100km,从而可以保证结果的可靠性。最终的层析成像结果表明成矿带地区下方的上地幔内存在"两高一低"的速度异常体,浅部的高速体可解释为现存的岩石圈,深部的高速体则为拆沉的岩石圈,而夹在中间的低速体为上涌的软流圈热物质发源地。我们的成像结果为成矿的拆沉模式提供了有力支持。该模式认为岩石圈的拆沉导致软流圈物质减压熔融,底侵在壳幔边界,最终爆发大规模岩浆活动和成矿作用。结果清楚地显示出拆沉的岩石圈已经下沉至上地幔底部,而且在其上方存在着明显的软流圈热物质。此外,成像结果还显示出深部的高、低速体的走向与成矿带走向基本一致,并且由南至北逐渐变浅。这些特征与成矿带的成矿阶段密切相关。但遗憾的是,成像结果无法提供软流圈物质起源的信息,有待今后进一步研究。  相似文献   

13.
Modeling of the seismic, thermal, and density structure of the Siberian craton lithospheric mantle at depths of 100-300 km has been performed along the superlong Meteorite and Rift seismic profiles. The 2D velocity sections reflect the specific features of the internal structure of the craton: lateral inhomogeneities, seismic-boundary relief at depths of ~ 100, 150, 240, and 300 km, velocities of 8.3-8.7 km/s, and the lack of low-velocity zone in the lower lithosphere. Mapping of the thermal state along the Meteorite and Rift profiles shows a significant temperature decrease in the cratonic mantle as compared with the average temperatures of the surrounding Phanerozoic mantle (> 300 °C) estimated from the global reference model AK135. Lateral temperature variations, reflecting the thermal anomalies in the cratonic keel, are observed at depths of < 200 km (with some decrease in temperature in the central part of the craton), whereas at depths of > 200 km, temperature variations are negligible. This suggests the preservation of residual thermal perturbations at the base of the lithosphere, which must lead to the temperature equalization in the transition zone between the lithosphere and the asthenosphere. Variations in chemical composition have a negligible effect on the thermal state but affect strongly the density structure of the mantle. The results of modeling admit a significant fertilization of matter at depths more than 180-200 km and stratification of the cratonic mantle by chemical composition. The thicknesses of chemical (petrologic) and thermal boundary layers beneath the Siberian craton are estimated. The petrologic lithosphere is localized at depths of ~ 200 km. The bottom of the thermal boundary layer is close to the 1450 °C isotherm and is localized at a depth of 300 km, which agrees with heat flow and seismic-tomography data.  相似文献   

14.
《Gondwana Research》2014,25(3-4):849-864
We have imaged the lithospheric structure beneath the central and western North China Craton (NCC) with Rayleigh wave tomography. The Rayleigh waveforms of 100 teleseismic events recorded by 208 broadband stations are used to yield high-resolution phase velocity maps at 13 periods from 20 s to 143 s. A 3-D S-wave velocity model is constructed based on the phase velocity maps. Our S-wave velocity model is broadly consistent with the results of previous tomography studies, but shows more detailed variations within the lithosphere. The Trans-North China Orogen (TNCO) is generally characterized by low-velocity anomalies but exhibits great heterogeneities. Two major low-velocity zones (LVZs) are observed in the north and south, respectively. The northern LVZ laterally coincides with sites of Cenozoic magmatism and extends to depths greater than 200 km. We propose that a small-scale mantle upwelling is present, confined to the north of the TNCO. A high-velocity patch in the uppermost mantle is also observed between the two LVZs adjacent to the narrow transtensional zone of the Cenozoic Shanxi–Shaanxi Rift (SSR). We interpret this as the remnant of a cratonic mantle root. The Ordos Block in the western NCC is associated with high-velocity anomalies, similarly reflecting the existence of cratonic mantle root, but a discernible low-velocity layer is observed at depths of 100–150 km in this location. We interpret that this mid-lithospheric structure was probably formed by metasomatic processes during the early formation of the NCC. Based on the observations from our S-wave velocity model, we conclude that the current highly heterogeneous lithospheric structure beneath the TNCO is the result of multiphase reworking of pre-existing mechanically weak zones since the amalgamation of the craton. The latest Cenozoic lithospheric reworking is dominated by the far-field effects of both Pacific plate subduction and the India–Eurasia collision.  相似文献   

15.
A passive seismic experiment across the Longmenshan (LMS) fault belt had been conducted between August 2006 and July 2007 for the understanding of geodynamic process between the Eastern Tibet and Sichuan basin. We herein collected 3677 first P arrival times with high precision from seismograms of 288 teleseismic events so as to reconstruct the upper mantle velocity structure. Our results show that the depth of the Lithosphere–asthenosphere boundary (LAB) changes from 70 km beneath Eastern Tibet to about 110 km beneath Longquanshan, Sichuan Basin, which is consistent with the receiver function imaging results. The very thin mantle part of the lithosphere beneath Eastern Tibet may suggest the lithosphere delamination due to strong interaction between the Tibetan eastward escaping flow and the rigid resisting Sichuan basin, which can be further supported by the existences of two high-velocity anomalies beneath LAB in our imaging result. We also find there are two related low-velocity anomalies beneath the LMS fault belt, which may indicate magmatic upwelling from lithosphere delamination and account for the origin of tremendous energy needed by the devastating Wenchuan earthquake.  相似文献   

16.
To better understand the lithosphere mantle collision tectonics between the India plate and Asia plate, we determine three dimensional P wave velocity structure beneath western Tibet using 27,439 arrival times from 2,174 teleseismic events recorded by 182 stations of Hi-CLIMB Project and 16 stations in the north of Hi-CLMB. Our tomographic images show the velocity structure significantly difference beneath northern and southern Qiangtang, which can further prove that the Longmu Co-Shuanghu ophiolitic belt is a significant tectonic boundary fault zone. There are two prominent high velocity anomalies and two prominent low velocity anomalies in our images. One obvious high velocity anomalies subduct beneath the Tibet at the long distance near 34°N, whereas it is broke off by an obvious low velocity anomaly under the IYS. We interpret them as northward subducting Indian lithosphere mantle and the low velocity anomanly under IYS likely reflects mantle material upwelling triggered by tearing of the northward subduction Indian lithosphere. The other prominent high velocity anomaly was imaged at a depth from 50 km to 200 km horizontal and up to the northern Qiangtang with its southern edge extending to about 34°N through Hoh Xil block. We infer it as the southward subducting Asia lithosphere mantle. The other widely low velocity anomaly beneath the Qiangtang block lies in the gap between the frontier of India plate and Asia plate, where is the channel of mantle material upwelling.  相似文献   

17.
Progress in the Study of Deep Profiles of Tibet and the Himalayas (INDEPTH)   总被引:5,自引:0,他引:5  
This paper introduces 8 major discoveries and new understandings with regard to the deep structure and tectonics of the Himalayas and Tibetan Plateau obtained in Project INDEPTH, They are mainly as follows. (1) The upper crust, lower crust and mantle lithosphere beneath the blocks of the plateau form a "sandwich" structure with a relatively rigid-brittle upper crust, a visco-plastic lower crust and a relatively rigid-ductile mantle lithosphere. This structure is completely different from that of monotonous, cold and more rigid oceanic plates. (2) In the process of north-directed collision-compression of the Indian subcontinent, the upper crust was attached to the foreland in the form of a gigantic foreland accretionary wedge. The interior of the accretionary wedge thickened in such tectonic manners as large-scale thrusting, backthrusting and folding, and magmatic masses and partially molten masses participated in the crustal thickening. Between the upper crust and lower crust lies a large detachment (e.g  相似文献   

18.
Observations of upper mantle reflectivity at numerous locations around the world have been linked to the presence of a heterogeneous distribution of rock types within a broad layer of the upper mantle. This phenomenon is observed in wide-angle reflection data from Lithoprobe's Alberta Basement Transect [the SAREX and Deep Probe experiments of 1995] and Trans-Hudson Orogen Transect [the THoRE experiment of 1993]. SAREX and Deep Probe image the Archaean lithosphere of the Hearne and Wyoming Provinces, whereas THoRE images the Archaean and Proterozoic lithosphere of the Trans-Hudson Orogen and neighbouring areas.Finite-difference synthetic seismograms are used to constrain the position and physical properties of the reflective layer. SAREX/Deep Probe modelling uses a 2-D visco-elastic finite-difference routine; THoRE modelling uses a pseudospectral algorithm. In both cases, the upper mantle is parameterized in terms of two media. One medium is the background matrix; the other is statistically distributed within the first as a series of elliptical bodies. Such a scheme is suitable for modelling: (1) variations in lithology (e.g., a peridotite matrix with eclogite lenses) or (2) variations in rheology (e.g., lenses of increased strain within a less strained background).The synthetic seismograms show that the properties of heterogeneities in the upper mantle do not change significantly between the two Lithoprobe transects. Beneath the Trans-Hudson Orogen in Saskatchewan, the layer is best modelled to lie at depths between 80 and 150 km. Based on observations from perpendicular profiles, anisotropy of the heterogeneities is inferred. Beneath the Precambrian domains of Alberta, 400 km to the west, upper mantle heterogeneities are modelled to occur between depths of 90 and 140 km. In both cases the heterogeneous bodies within the model have cross-sectional lengths of tens of kilometers, vertical thicknesses less than 1 km, and velocity contrasts from the background of − 0.3 to − 0.4 km/s. Based on consistency with complementary data and other results, the heterogeneous layer is inferred to be part of the continental lithosphere and may have formed through lateral flow or deformation within the upper mantle.  相似文献   

19.
中国兴蒙—吉黑地区岩石圈结构基本特征   总被引:42,自引:7,他引:42       下载免费PDF全文
兴蒙—吉黑地区岩石圈由额尔古纳、兴安、松嫩和佳木斯4个古陆块及完达山中生代大陆边缘增生杂岩构成。Nd同位素模式年龄显示,佳木斯陆块时代最老,1500~2200Ma;额尔古纳陆块次之,1000~1600Ma;兴安和松嫩陆块具有相同的Nd模式年龄,500~1200Ma。地球化学示踪分析表明,该区古生代时表层地壳的Nd同位素模式年龄以中元古代为主,而中生代花岗岩的Nd同位素模式年龄主要为新元古代,表明该区深部地壳的年龄较表层地壳的年龄年轻,显示出该区地壳具有下新上老的年龄结构。Os同位素分析同时证明,该区岩石圈地幔也多表现为年轻性质。地震(Vp)速度结构显示,该区岩石圈结构在垂向上具有两个明显的特征:一是与传统意义上的地震岩石圈概念明显不同,该区岩石圈地幔的低速带没有稳定连续的顶界面,低速异常顶界面深浅不一,与高速异常体犬齿交错,某些构造单元之下的低速异常直达Moho,但底界面却十分稳定,深度为230~240km;二是“立交式”速度结构,表现为在地壳范围内,速度等值线总体呈北东向展布;岩石圈地幔的速度等值线呈北北西-近南北向展布;低速异常圈层的速度等值线为近东西向展布。  相似文献   

20.
杨文采 《地质学报》2021,95(1):227-237
大陆动力学研究需要物质随空间和时间的变化的信息。三维密度和地震波速度扰动图像反映岩石圈物质的空间分布,要和大地构造学中的时间尺度信息综合起来,才能恢复动力学作用的过程。本文通过对比不同构造期的构造图和地壳不同深度的地球物理性质图像,研究中国大陆密度以及地震波速度扰动和构造事件的相关度。研究表明,岩石圈地幔的密度和波速扰动和现今板块构造的相关度是高的,说明岩石圈地幔的密度大黏度高,不仅地震波速快得多,物质蠕动的速度也比下地壳慢得多,板块运动产生的变形保存时间比较久。中国大陆中地壳的密度扰动和白垩纪以来的构造事件的相关度是高的,说明中地壳的密度扰动主要反映了白垩纪以来的构造事件。中国大陆上地壳结晶基底的密度扰动和侏罗纪以来的构造事件的相关度是高的,说明上地壳的密度扰动可以反映燕山期的构造事件。对于中国大陆而言,下地壳的波速变化和板块构造没有明显的相关性;不过下地壳深层的密度扰动也反映新构造期的构造事件。其原因可能是因为下地壳的物质黏度比较低,物质蠕动的速度比岩石圈地幔快得多,板块运动产生的变形不容易保存。总之,应用不同深度的密度扰动图像分别推测不同地质时期的地壳构造运动发生的地点和范围是可行的,地壳深层的三维密度扰动成像有可能提供180Ma以来中国大陆地质作用事件的有关信息。  相似文献   

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