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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 >A reconnaissance teleseismic study of the upper mantle and transition zone beneath the Archean Slave craton in NW Canada
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A reconnaissance teleseismic study of the upper mantle and transition zone beneath the Archean Slave craton in NW Canada

机译:加拿大西北部太古宙奴隶克拉通下方上地幔和过渡带的侦察远程地震研究

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摘要

The objective of this study is to investigate upper mantle structure below the Archean Slave craton, site of the oldest known rocks on Earth and numerous diamondiferous kimberlites, and thence to gain an understanding of early craton formation and kimberlite genesis. To this aim, a temporary array, consisting of 13 sites equipped with broadband seismometers, recorded teleseisms between November 1996 and May 1998. This data set has been augmented with recordings from the Yellowknife seismic array. Our three most robust observations and their interpretation are: (1) P-wave travel-time tomography reveals the oldest part of the craton, the Central Slave Basement Complex, to be underlain by the fastest seismic velocities, indicating that this block remains distinct well into mantle depths; (2) receiver function analysis requires only the Moho as major S-wave velocity discontinuity and points to a fairly constant crustal thickness throughout the Slave province; and (3) SKS splitting analysis shows little variation in delay times and fast polarization directions across the array, leading us to conclude that the present-day plate motion of North America is the primary cause for mantle fabric beneath the entire array. Furthermore, the data let us rule out the possibility that the Mackenzie plume had any seismologically detectable effect on the Slave lithosphere. More speculative results of our investigation, namely a possible genetic link between a low seismic velocity anomaly at depth with the overlying Lac de Gras kimberlite field, and a possible Archean origin of two shallow low-velocity anomalies, will require further investigation. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 69]
机译:这项研究的目的是调查太古宙奴隶克拉通下的上地幔结构,地球上最古老的已知岩石以及许多钻石状金伯利岩的位置,从而了解早期克拉通的形成和金伯利岩的成因。为此目的,一个临时阵列由13个配备了宽带地震仪的站点组成,在1996年11月至1998年5月之间记录了远震。该数据集得到了耶洛奈夫地震阵列的记录的补充。我们的三个最可靠的观察结果及其解释是:(1)P波传播时间层析成像揭示了克拉通最古老的部分,即中央奴隶地下室复合体,其下为最快的地震速度,这表明该地块仍然很好进入地幔深处(2)接收机功能分析只需要Moho作为主要的S波速度不连续性,并指向整个Slave省的地壳厚度相当恒定; (3)SKS分裂分析显示整个阵列的延迟时间和快速极化方向几乎没有变化,这使我们得出结论,北美目前的板块运动是整个阵列下方地幔结构的主要原因。此外,这些数据使我们排除了麦肯齐羽对从岩石圈有地震探测作用的可能性。我们研究的更多推测性结果,即深处低地震速异常与上覆的Lac de Gras金伯利岩场之间的可能遗传联系,以及两个浅层低速异常的太古宙起源,可能需要进一步研究。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:69]

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