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Oceanic Lithosphere 4. The origin and evolution of oceanic lithosphere: Magmatic processes at oceanic spreading centres

机译:大洋岩石圈4.大洋岩石圈的起源和演化:大洋扩散中心的岩浆过程

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Primary melts generated in the oceanic mantle migrate upward and pond at major discontinuities to form magma chambers. Such chambers have thus far been identified only on fast- and intermediate-spreading ridges but probably also exist at slow-spreading ridges. The size, shape and longevity of subrift chambers reflect the magma supply rate, the extent of hydrothermal cooling, and the regional stress field. Ophiolite studies suggest small, ephemeral chambers rather than large, long-lived bodies. At fast-spreading ridges the chambers probably consist largely of crystalline mush, possibly with some melt sills, and a thin melt zone at the top. At slower-spreading ridges, magmatic activity is more episodic and seafloor spreading may be punctuated by periods of mainly tectonic extension. Fractionating melts in the chambers are buffered by injections of more primitive melt from depth to produce the relatively uniform composition of MORB. The gross structural uniformity of the ocean crust must reflect extensive interplay and feedback of magmatic, hydrothermal and tectonic processes, resulting in a self-ordered system.
机译:在海洋地幔中产生的初级熔体向上迁移并在主要的不连续处形成池塘,形成岩浆室。到目前为止,仅在快速扩展和中等扩展的山脊上发现了这种小室,但在慢速扩展的山脊上也可能存在这种小室。地下室的大小,形状和寿命反映了岩浆的供应速度,热液冷却的程度和区域应力场。蛇纹岩的研究表明,较小的短暂的房间,而不是大型的长寿命的身体。在快速扩散的山脊处,这些室可能主要由结晶糊状物组成,可能带有一些熔渣,而顶部则是一个较薄的熔渣区。在分布较慢的山脊处,岩浆活动较为偶发,海底扩展可能被主要为构造伸展的时期所打断。腔室中的分馏熔体通过从深度注入更多原始熔体来缓冲,以产生相对均匀的MORB成分。大洋壳的总体结构均匀性必须反映出岩浆,热液和构造过程的广泛相互作用和反馈,从而形成一个有序的系统。

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