Initiation and propagation of polygonal fault arrays by thermally triggered volume reduction reactions in siliceous sediment
Initiation and propagation of polygonal fault arrays by thermally triggered volume reduction reactions in siliceous sediment
复制标题
硅质沉积物中热触发减容反应引起的多边形断层阵列的引发和传播
DOI:
10.1016/j.margeo.2011.05.005
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发表时间:
2011
期刊:
影响因子:
2.9
通讯作者:
M. Ireland
中科院分区:
文献类型:
--
作者:
R. Davies;M. Ireland
Polygonal fault arrays have been documented in sedimentary basins from around the world and several theories exist as to how they initiate and propagate. Three-dimensional seismic data from polygonal fault arrays from offshore Norway are used to develop a new process model for polygonal fault development. We propose that in siliceous sediment, polygonal fault arrays can be triggered thermally, due to the conversion of opal-A to opal-CT at depths of 100–1000m. This conversion causes differential compaction and shear failure and therefore fault initiation. The location of the earliest faults is dependent on where opal-A to opal-CT conversion and compaction occur first. This is controlled by which strata have a favourable bed composition, local fluid chemistry and temperature or because the strata reach the depth of the reaction front first due to the presence of pre-existing structural relief (folds or faults). Subsidence of biosiliceous sediment through the opal-A to opal-CT reaction front causes fault propagation because of continued localised differential compaction. Fault initiation and propagation due to silica conversion generate polygonal fault arrays at significantly deeper burial depths than previously thought possible.
影响因子:
2.7
作者:
Ireland M
通讯作者:
Ireland M