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141.
142.
Architecture and recognition criteria of ancient shelf ridges; an example from Campanian Almond Formation in Hanna Basin,USA 下载免费PDF全文
Julio Leva López Valentina Marzia Rossi Cornel Olariu Ronald J. Steel 《Sedimentology》2016,63(6):1651-1676
Shelf ridges are sedimentary bodies formed on the continental shelf due to transgressive reworking (tidal or storm) of lowstand deposits. Common on modern shelves, they are under‐represented in the geological record due to a lack of recognition criteria and facies model. This article proposes a new facies and architectural model for shelf ridges, linked to their inception–evolution–abandonment cycle and the process regime of the basin. The model is mainly based on new outcrop data and interpretations from three sandstone bodies of the Almond Formation, an overall transgressive interval during the infill of the Campanian Western Interior Seaway. Building from the case study, and ancient and modern examples, six characteristics are proposed for the recognition of ancient shelf ridges. Shelf ridges: (i) are encased between thick marine mudstone intervals; (ii) have a basal unconformity that erodes into marine muds or into the remnants of a previous shoreline; (iii) have a non‐erosional upper boundary that transitions into marine muds; (iv) are characterized by clean and well‐sorted sandstones, often cross‐bedded; (v) contain fully marine ichnofauna; and (vi) present compound architectures with large accretion surfaces and lower order structures. Although shelf ridges have been described in previous studies as generated exclusively by either tidal or storm currents, it is clear, from modern examples and the case study, that these two processes can be recorded and preserved in a single shelf ridge. The stratigraphy of these sandstone bodies is therefore much more complex than previously recognized, bearing the signature of changing tidal and storm intensity through time. Because they are developed during transgressions, shelf ridges are commonly subject to strong changes in process regime as sea‐level changes can easily affect the oceanographic conditions and the morphology of the basin. For this reason, shelf ridges can provide the best record of shelf process variability during transgressions. 相似文献
143.
白垩纪以来太平洋上地幔组成和温度变化 总被引:1,自引:0,他引:1
张国良 《海洋学报(英文版)》2016,35(4):19-25
The geological evolution of the Earth during the mid-Cretaceous were shown to be anomalous, e.g., the pause of the geomagnetic field, the global sea level rise, and increased intra-plate volcanic activities, which could be attributed to deep mantle processes. As the anomalous volcanic activities occurred mainly in the Cretaceous Pacific, here we use basalt chemical compositions from the oceanic drilling(DSDP/ODP/IODP) sites to investigate their mantle sources and melting conditions. Based on locations relative to the Pacific plateaus, we classified these sites as oceanic plateau basalts, normal mid-ocean ridge basalts, and near-plateau seafloor basalts. This study shows that those normal mid-ocean ridge basalts formed during mid-Cretaceous are broadly similar in average Na8, La/Sm and Sm/Yb ratios and Sr-Nd isotopic compositions to modern Pacific spreading ridge(the East Pacific Rise). The Ontong Java plateau(125–90 Ma) basalts have distinctly lower Na8 and143Nd/144 Nd, and higher La/Sm and 87Sr/86 Sr than normal seafloor basalts, whereas those for the near-plateau seafloor basalts are similar to the plateau basalts, indicating influences from the Ontong Java mantle source. The super mantle plume activity that might have formed the Ontong Java plateau influenced the mantle source of the simultaneously formed large areas of seafloor basalts. Based on the chemical data from normal seafloor basalts, I propose that the mantle compositions and melting conditions of the normal mid-ocean ridges during the Cretaceous are similar to the fast spreading East Pacific Rise. Slight variations of mid-Cretaceous normal seafloor basalts in melting conditions could be related to the local mantle source and spreading rate. 相似文献
144.
将自然山体景观的维护作为山地城市建筑高度控制的目标,以研究区域的地表模型(不规则三角网,简称TIN)为基础数据,基于GIS 10.2技术平台,将瞭望点视野中的山脊线下降20%后的高度作为视线高度控制线计算研究区域内建筑高度控制值,以期为山地城市的控制性详细规划和城市设计中的建筑高度控制提供技术参考。最后,以河南省登封市新区为例,应用此方法来绘制该地区的建筑高度控制栅格图。通过设置像元分辨率的大小,本方法也可用于山地城市修建性详细规划中建筑设计方案的比较。 相似文献
145.
146.
Second-order ridge axis discontinuities in the south Atlantic: Morphology,structure, and evolution 总被引:1,自引:0,他引:1
Continuous along-axis Sea Beam coverage of the slow-intermediate spreading (34–38 mm yr−1 full rate) southern Mid-Atlantic Ridge (25°–27°30′S and 31°–38° S) shows that the ridge axis is segmented by both rigid and
non-rigid discontinuities. Following the model of Macdonald et al. (1988b), a hierarchy of four orders is proposed for ridge
axis discontinuities based on a continuum of relative age and distance offset across the discontinuites. This paper discusses
the characteristics associated with five second-order discontinuities found in the areas surveyed. First-order discontinuities
represent rigid offsets, transform faults, whereas non-rigid discontinuities fall into the second, third and fourth orders.
Like transform fault boundaries, second-order discontinuities have distinctive morphologic signatures both on and off-axis-discordant
zones — and therefore are better defined than third- or fourth-order discontinuities. Second-order discontinuities are offsets
that range in distance from less than 10 km to approximately 30 km and vary in age offset from 0.5 to approximately 2.0 m.y.
The variable morphotectonic geometries associated with these discontinuities indicate that horizontal shear strains are accommodated
by both extensional and strike-slip tectonism and that the geometries are unstable in time. Three characteristic geometries
are recognized: (1)en echelon jog in the plate boundary where ridge axis tips overlap slightly, (2)en echelon jog in the plate boundary where ridge axes are separated by an extensional basin whose long axis is oriented parallel to
the strike of the adjoining ridge axes, and (3) oblique offset characterized by a large extensional basin that is oriented
approximately 45° to the strike of the ridge axes. In the case of the third type, evidence for short strands of strike-slip
tectonism that link an obliquely oriented extensional basin flanking ridge tips is often apparent. Analysis of the detailed
bathymetric and magnetic data collected over the second-order discontinuities and their off axis terrain out to 5–7 m.y. documents
that second-order discontinuities can follow several evolutionary paths: they can evolve from transform fault boundaries through
prolonged asymmetric spreading, they may migrate along strike leaving a V-shaped wake, and they may remain in approximately
the same position but oscillate slightly back and forth. In addition, a small change in the pole of relative motion occurring
4–5 Ma is thought to have resulted in the initiation of at least one second-order discontinuity in the survey area. A geologic
model is proposed which involves the interplay of lithospheric thickness, asymmetric spreading, temporal and spatial variability
of along-axis magmatic input and changes in the poles of relative motion to explain the origin, morphology and evolution of
second-order ridge axis discontinuities. 相似文献
147.
在海南岛的海滩岩中首次发现了微生物岩,这是一种发育在珊瑚(碎屑和砾块)骨骼孔穴中,少量在珊瑚碎块表面的微生物碳酸盐沉积,这些微生物碳酸盐沉积呈叠层或包壳状生长,可黏结细小的生物碎屑,具有独特的发育模式。微生物碳酸盐沉积在南海的发现支持海滩岩的胶结物部分是源于微生物成因的假设,进而肯定了微生物在碳酸盐沉积中所起的重要作用。结合海滩岩组分中微钻孔的发育特征和微生物岩发育模式的描述,在一定程度上填补了我国南方海滩岩中发育微生物碳酸盐沉积物的研究空白。 相似文献
148.
Boudier Françoise Godard Marguerite Armbruster Catherine 《Marine Geophysical Researches》2000,21(3-4):307-326
The eastern end of the Haylayn massif exposes a complex paleoridge structure interpreted as the tip of a northwestward propagating segment (Nicolas et al., this issue). The area, revisited from a petrostructural and geochemical viewpoint, offers the most documented exposures of the association of olivine gabbros and gabbronorites in Oman (Juteau et al., 1988). Gabbronorites were injected while the main gabbro unit was deforming in the magmatic state. Both units do not differ chemically, except for the SiO2 enrichment of the orthopyroxene-rich gabbros relative to olivine-gabbro. In addition, they display the same trace element signature, which implies the same parent magma for both units. The extension of the stability field of orthopyroxene is assigned to increase of oxygen fugacity due to hydration. The source of hydration is the ridge axis hydrothermal circulation, suggesting hydrothermal/magma interaction at temperatures above the gabbro solidus. The distribution of gabbronorites at the scale of the entire ophiolite suggests a relation with ridge tectonics where high-T conditions of hydrothermal-magmatic interaction are met. Such conditions are met when propagating segments rotate the structures of the dying magma chamber. 相似文献
149.
K. Crane E. Sundvor J. -P. Foucher M. Hobart A. M. Myhre S. LeDouaran 《Marine Geophysical Researches》1988,9(2):165-194
The northern Norwegian-Greenland Sea opened up as the Knipovich Ridge propagated from the south into the ancient continental Spitsbergen Shear Zone. Heat flow data suggest that magma was first intruded at a latitude of 75° N around 60 m.y.b.p. By 40–50 m.y.b.p. oceanic crust was forming at a latitude of 78° N. At 12 m.y.b.p. the Hovgård Transform Fault was deactivated during a northwards propagation of the Knipovich Ridge. Spreading is now in its nascent stages along the Molloy Ridge within the trough of the Spitsbergen Fracture Zone. Spreading rates are slower in the north than the south. For the Knipovich Ridge at 78° N they range from 1.5–2.3 mm yr-1 on the eastern flank to 1.9–3.1 mm yr-1 on the western flank. At a latitude of 75° N spreading rates increase to 4.3–4.9 mm yr-1.Thermal profiles reveal regions of off-axial high heat flow. They are located at ages of 14 m.y. west and 13 m.y. east of the northern Knipovich Ridge, and at 36 m.y. on the eastern flank of the southern Knipovich Ridge. These may correspond to episodes of increased magmatic activity; which may be related to times of rapid north-wards rise axis propagation.The fact that the Norwegian-Greenland Sea is almost void of magnetic anomalies may be caused by the chaotic extrusion of basalts from a spreading center trapped within the confines of an ancient continental shear zone. The oblique impact of the propagating rift with the ancient shear zone may have created an unstable state of stress in the region. If so, extension took place preferentially to the northwest, while compression occurred to the southeast between the opening, leaking shear zone and the Svalbard margin. This caused faster spreading rates to the northwest than to the southeast. 相似文献
150.
南黄海陆架沙脊的形成与演变 总被引:11,自引:3,他引:11
张光威 《海洋地质与第四纪地质》1991,11(2):25-35
本文在对水深较大的滨外沙脊区钻孔、柱状样岩心详细观察的基础上,综合分析已有资料,并对该区浅地震地层剖面和水下沙脊的卫片进行了解译,提出南黄海陆架沙脊最早的形成年代为距今4000年,而现代的潮流沙脊形成于距今2000年以来的最近时期,潮流沙脊是在海面稳定、强潮流发育和大量物质供给的条件下形成和发展的,潮流沙脊的沉积物主要来自黄河和淮河;现代滨外沙脊具有向西北方向迁移、纵向延伸长度不断萎缩的动态演化特征。 相似文献