Relationship between depth and age in the North Pacific Ocean

被引:79
作者
Hillier, JK [1 ]
Watts, AB [1 ]
机构
[1] Univ Oxford, Dept Earth Sci, Oxford OX1 3PR, England
关键词
D O I
10.1029/2004JB003406
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
[1] The North Pacific contains active mid-oceanic ridges and the oldest, Jurassic (166.8 +/- 4 Ma), drilled oceanic crust. Its bathymetry is therefore critical to studies of the applicability of thermal contraction models (e.g., the infinite half-space and cooling plate) to the subsidence of seafloor with crustal age. The bathymetry, however, contains seamounts and oceanic islands (e.g., Mid-Pacific Mountains), oceanic plateaus (e.g., Hess, Magellan, and Shatsky), and midplate topographic swells (e.g., Hawaii), which are unrelated to the current plate-scale thermal state of the oceanic lithosphere. We use here a regional-residual separation algorithm called MiMIC to remove these features and to isolate the depths associated with the subsidence of North Pacific oceanic crust. These depths, z (m), increase with time, t (Ma), as z = 3010 + 307roott p until 85 Ma. For greater ages the depths "flatten'' and asymptotically approach similar to6.1 km and are well described by z = 6120 - 3010 exp(-0.026t). The flattening is not "abrupt'' as recently described in z-t curves produced using the mean, median, and mode. As a result, the depths of both young and old seafloor are fit well (mean difference between and observed and calculated depths of 75 +/- 54 m 1sigma) by a single cooling plate model. Using a thermal conductivity, k, of 3.138 mW m(-2) as previous studies, however, gives a plate of similar thickness (i.e., thermal thickness, L, of similar to115 km) but one which is unreasonably hot (i.e., temperature at the base of the plate, T-b, of 1522 degreesC) and inexpansive (i.e., coefficient of thermal expansion, alpha, of 2.57 x 10(-5) degreesC(-1)). More reasonable values (i.e., T-b = 1363 degreesC, k = 3.371 W m(-1) degreesC(-1), alpha = 2.77 x 10(-5) degreesC(-1), and L = 120 km) are obtained if the crustal thickness is used to constrain Tb and a certain amount of the surface heat flow is allowed to be radiogenically generated within the oceanic lithosphere.
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页码:1 / 22
页数:22
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