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Burial and thermal history of the West Bashkirian sedimentary basins

机译:西巴什基尔沉积盆地的埋藏和热史

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摘要

The GALO system is applied to the numerical reconstruction of burial and thermal histories of the West Bashkirian lithosphere from the Riphean to the present. An analysis of the variation in tectonic subsidence of the basin during its development is utilized to estimate approximately the mantle heat flow variations. Our variant of basin evolution suggests that after cooling in the Early Riphean, the rather weak thermal reactivations have not led to considerable heating of the lithosphere in the study region. Surface heat flow decreased from relatively high values in the Early Riphean (60-70 mW/m(2) in the eastern area and 40-50 mW/m(2) in the western part) to present-day values of 32-40 mW/m(2). In spite of the relatively low temperature regime of the basin as a whole, a syn-rifting deposition of more than 10 km of limestone, shale and sandstone in the Riphean resulted in rather high temperatures (180-190 degreesC) at the base of present-day sedimentary blanket in the eastern area. In agreement with the observed data, computed present-day heat flow through the sediment surface increases slightly from 32 to 34 mW/m(2) near the west boundary of the region to 42 mW/m(2) near the boundary of the Ural Foldbelt, whereas the heat flow through the basement surface decreases slightly from 28-32 to 24-26 mW/m(2) in the same direction. The mantle heat flow is only 11.3-12.7 mW/m(2), which is considerable lower than mean heat flow of the Russian Platform (16-18 mW/m(2)) and comparable with the low heat flow of Precambrian shields. (C) 2003 Elsevier B.V. All rights reserved. [References: 60]
机译:GALO系统应用于从里菲亚至今的西巴什基尔岩石圈的埋藏和热史的数值重建。通过对盆地发育过程中构造沉降的变化进行分析,可以大致估算出地幔的热流变化。我们盆地演化的变体表明,在里菲亚早期冷却之后,相当弱的热活化并没有导致研究区域岩石圈的大量加热。地表热流从早期里菲安的相对较高的值(东部地区为60-70 mW / m(2),西部地区为40-50 mW / m(2))下降到目前的32-40 mW / m(2)。尽管整个盆地的温度相对较低,但在里菲安地区超过10 km的石灰岩,页岩和砂岩的同分流沉积导致目前的基础温度较高(180-190摄氏度)东部地区的天沉积层。与观测数据一致,通过沉积物表面的当前计算的热流量从该地区西边界附近的32到34 mW / m(2)略有增加,到乌拉尔边界附近的42 mW / m(2)褶皱带,而沿相同方向流经地下室表面的热量从28-32轻微降低到24-26 mW / m(2)。地幔热流仅为11.3-12.7 mW / m(2),远低于俄罗斯平台的平均热流(16-18 mW / m(2)),与前寒武纪盾构的低热流相当。 (C)2003 Elsevier B.V.保留所有权利。 [参考:60]

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