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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Gravity derived crustal thickness model of Botswana: Its implication for the M-w 6.5 April 3, 2017, Botswana earthquake
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Gravity derived crustal thickness model of Botswana: Its implication for the M-w 6.5 April 3, 2017, Botswana earthquake

机译:Botswana的重力衍生地壳厚度模型:其对M-W 6.5的含义2017年4月3日,博茨瓦纳地震

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摘要

Botswana experienced a M-w 6.5 earthquake on 3rd April 2017, the second largest earthquake event in Botswana's recorded history. This earthquake occurred within the Limpopo-Shashe Belt, similar to 350 km southeast of the seismically active Okavango Rift Zone. The region has no historical record of large magnitude earthquakes or active faults. The occurrence of this earthquake was unexpected and underscores our limited understanding of the crustal configuration of Botswana and highlight that neotectonic activity is not only confined to the Okavango Rift Zone. To address this knowledge gap, we applied a regularized inversion algorithm to the Bouguer gravity data to construct a high-resolution crustal thickness map of Botswana. The produced crustal thickness map shows a thinner crust (35-40 km) underlying the Okavango Rift Zone and sedimentary basins, whereas thicker crust (41-46 km) underlies the cratonic regions and orogenic belts. Our results also show localized zone of relatively thinner crust (similar to 40 km), one of which is located along the edge of the Kaapvaal Craton within the M-W 6.5 Botswana earthquake region. Based on our result, we propose a mechanism of the Botswana Earthquake that integrates crustal thickness information with elevated heat flow as the result of the thermal fluid from East African Rift System, and extensional forces predicted by the local stress regime. The epicentral region is therefore suggested to be a possible area of tectonic reactivation, which is caused by multiple factors that could lead to future intraplate earthquakes in this region.
机译:博茨瓦纳于2017年4月3日经历了M-W 6.5地震,这是博茨瓦纳记录历史的第二大地震活动。这种地震发生在林蛙 - 砂皮带内,同样为东南部350千米,地震活动的Okavango裂缝区。该地区没有大幅度地震或积极断层的历史记录。这种地震的发生是出乎意料的,强调了我们对博茨瓦纳的地壳配置的有限理解,并强调新的活动不仅限于Okavango Rift区。为了解决这一知识差距,我们将正规化的反转算法应用于Bouguer重力数据,以构造博茨瓦纳的高分辨率地壳厚度图。所产生的地壳厚度图显示了粗糙的地壳(35-40km),底层裂缝和沉积盆地,而厚壳(41-46 km)底层裂缝和造口腰带。我们的结果还显示了相对较薄的地壳(类似于40 km)的本地区域,其中一个是沿着M-W 6.5博茨瓦纳地震区内的Kaapvaal Craton的边缘。基于我们的结果,我们提出了博茨瓦纳地震的机制,该地震的机制是由于来自东非裂口系统的热流体的结果集成了地壳厚度信息,以及局部应力制度预测的延伸力。因此,表征地区建议是构造重新激活的可能领域,这是由可能导致该地区未来内部地震的多种因素引起的。

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