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High-resolution, deep tow, multichannel seismic and sidescan sonar survey of the submarine mounds and associated BSR off Nicaragua pacific margin

机译:尼加拉瓜太平洋边缘海底丘及相关BSR的高分辨率,深层拖曳,多通道地震和侧扫声纳测量

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摘要

Bathymetric and conventional multichannel seismic surveys offshore Nicaragua and Costa Rica have revealed numerous mud mounds beneath which the generally widespread BSR is not well imaged. However, many of the mounds are partially capped by patches of authigenic carbonate crusts, so it was not clear if the semitransparent seismic facies and the apparent gaps in the BSR beneath the mounds are real or due to poor normal-incidence seismic penetration through the cap rocks. To address these problems, a high-resolution seismic survey was carried out over the continental slope of the Nicaraguan Pacific margin using a deep towed multichannel seismic streamer (DTMCS) along with a sidescan sonar system (DTS) to image submarine mud mounds and the associated BSR. The proximity of the very short (39 m active length) but high-resolution 17 channel streamer to the seafloor of the deep towed system allows greatly improved lateral resolution whereas the relatively large source-receiver offset allows the undershooting of the cap rocks. For the first time our data show that the BSR in many cases continues but rises beneath the mounds. This is consistent with the advection of deep warm fluids and thus increased heat flow through the mounds. The occurrence of mud mounds seems to be controlled by the locations of faults.
机译:尼加拉瓜和哥斯达黎加近海的等深线测深和常规多通道地震勘探发现了许多泥丘,在这些泥丘下,普遍散布的BSR成像不好。然而,许多土墩被部分自生的碳酸盐地壳覆盖,因此尚不清楚半透明地震相和土墩下方BSR中的表观缝隙是真实的,还是由于法向入射的穿透性差而导致的岩石。为了解决这些问题,尼加拉瓜太平洋边缘大陆坡上进行了高分辨率地震勘测,使用了深拖多通道地震拖缆(DTMCS)和侧扫声纳系统(DTS)对海底泥丘及相关海底影像进行成像。 BSR。非常短(有效长度为39 m)但高分辨率的17通道拖缆与深拖系统的海底接近,可以大大提高横向分辨率,而相对较大的震源-接收器偏移量则可以使盖层钻头下冲。我们的数据首次显示,在许多情况下,BSR仍在继续,但上升到了最低点。这与较深的温暖流体的平流一致,从而增加了通过土堆的热流。泥丘的出现似乎受断层位置控制。

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