The onshore crustal and upper mantle velocity structure of the British Isles has been investigated by teleseismic receiver function analysis. The results of the study augment the dense offshore and sparse onshore models of the velocity structure beneath the area. In total almost 1500 receiver functions have been analysed, which have been calculated using teleseismic data from 34 broadband and short-period, three-component seismic recording instruments. The crustal structure has primarily been investigated using 1-D grid search and forward modelling techniques, returning crustal thicknesses, bulk crustal V[subscript p]/V[subscript s] ratio and velocity-depth models. H−κ stacking reveals crustal thicknesses between 25 and 36 km and V[subscript p]/V[subscript s] ratios between 1.6 and 1.9. The crustal thicknesses correlate with the results of previous seismic reflection and refraction profiles to within ±2 km. The significant exceptions are the stations close to the Iapetus Suture where the receiver function crustal thicknesses are up to 5 km less than the seismic refraction Moho. This mismatch could be linked to the presence of underplated magmatic material at the base of the crust. 1-D forward modelling has revealed subcrustal structures in northern Scotland. These correlate with results from other UK receiver function studies, and correspond with the Flannan and W-reflectors. The structures are truncated or pinch out before they reach the Midland Valley of Scotland. The isolated subcrustal structure at station GIM on the Isle of Man may be related to the closure of the Iapetus Ocean.
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机译:通过远震接收器功能分析,研究了不列颠群岛的陆上地壳和上地幔速度结构。研究结果增强了该区域下方速度结构的密集海上模型和稀疏陆地模型。总共分析了近1500种接收机功能,这些功能是使用来自34种宽带和短周期三分量地震记录仪的远震数据计算得出的。地壳结构主要是通过一维网格搜索和正向建模技术,返回的地壳厚度,整体地壳V [下标p] / V [下标s]比率和速度深度模型进行了研究。 H-κ叠加显示地壳厚度在25至36 km之间,V [下标p] / V [下标s]比在1.6至1.9之间。地壳厚度与先前地震反射和折射剖面的结果相关,在±2 km之内。重要的例外是靠近Iapetus缝合线的测站,其中接收器功能地壳厚度比Moho地震折射小5 km。这种不匹配可能与地壳底部存在下层岩浆物质有关。一维正演模型揭示了苏格兰北部的亚壳结构。这些与其他英国接收器功能研究的结果相关,并且与Flannan和W反射器相对应。这些结构在到达苏格兰的米德兰谷之前被截断或挤压。马恩岛GIM站上孤立的亚壳结构可能与Iapetus海洋的关闭有关。
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