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Geological controls on the gas hydrate system of Formosa Ridge, South China Sea

机译:南海福尔摩沙岭天然气水合物系统的地质控制

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Formosa Ridge is one of many topographic ridges created by canyon incision into the eastern South China Sea margin. The northwestern termination of the ridge is caused by beheading of the ridge due to a westward shift of the canyon that originally formed to the eastern flank of Formosa Ridge. Below Formosa Ridge a bottom simulating reflector (BSR) exists. Its depth below sea floor coincides with the theoretical base of the gas hydrate stability zone and the reflection has reverse polarity suggesting that it is caused by free gas below gas hydrate accumulations. The BSR is ubiquitous but shows significant variations in depth below sea floor ranging from 150 ms TWT (or approximately 180 m) underneath the incised canyon in the north to up to 500 ms (or approximately 460 m) underneath the crest of Formosa Ridge. Predominantly this depth variation is the result of topography on subsurface temperature, but comparison with the average BSR depth underneath the surrounding canyons suggests that recent canyon incision in the north has perturbed the thermal state of the sediments. Formosa Ridge consists of a northern half that is dominated by refilled older canyons and a southern half that consists mainly of contourite deposits. However, judging by the reflection seismic data this difference in origin seems to have little effect on the distribution of gas hydrate.
机译:福尔摩沙山脊是由峡谷切割成南中国海东部边缘而形成的许多地形山脊之一。山脊的西北端是由于最初向福尔摩沙山脊的东侧形成的峡谷向西移动而使山脊斩首而造成的。在Formosa脊下方,存在一个底部模拟反射器(BSR)。它在海床以下的深度与天然气水合物稳定带的理论基础一致,并且反射具有反极性,表明它是由天然气水合物聚集以下的游离气体引起的。 BSR无处不在,但显示出海床以下深度的显着变化,范围从北部切开的峡谷下方的150毫秒TWT(或大约180 m)到福尔摩沙岭顶下方的500 ms(或大约460 m)。这种深度变化主要是地下温度地形的结果,但与周围峡谷下方的平均BSR深度进行比较表明,北部最近的峡谷切入扰动了沉积物的热状态。福尔摩沙山脊由北半部分组成,北半部分由较老的峡谷所占据,而南半部分主要由半硬岩矿床组成。但是,根据反射地震数据判断,这种产地差异似乎对天然气水合物的分布影响很小。

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