首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Lithospheric Control of Melt Generation Beneath the Rungwe Volcanic Province, East Africa: Implications for a Plume Source
【24h】

Lithospheric Control of Melt Generation Beneath the Rungwe Volcanic Province, East Africa: Implications for a Plume Source

机译:普罗维尔火山省下熔融一代的岩性控制:对羽流源的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The Rungwe Volcanic Province (RVP) is a volcanic center in an anomalous region of magma-assisted rifting positioned within the magma-poor Western Branch of the East African Rift (EAR). The source of sublithospheric melt for the RVP is enigmatic, particularly since the volcanism is highly localized, unlike the Eastern Branch of the EAR. Some studies suggest the source of sublithospheric melt beneath the RVP arises from thermal perturbations in the upper mantle associated with an offshoot of the African superplume flowing from the SW, while others propose a similar mechanism, but from the Kenyan plume diverted around the Tanzania Craton from the NE. Another possibility is decompression melting from upwelling sublithospheric mantle due to lithospheric modulated convection (LMC) where the lithosphere is thin. The authors test the hypothesis that sublithospheric melt feeding the RVP can be generated from LMC. We develop a 3D thermomechanical model of LMC beneath the RVP and the Malawi Rift and constrain parameters for sublithospheric melt generation due to LMC. We assume a rigid lithosphere and use non-Newtonian, temperature-, pressure-, and porosity-dependent creep laws of anhydrous peridotite for the sublithospheric mantle. We find a pattern of upwelling from LMC beneath the RVP. The upwelling generates melt only for elevated mantle potential temperatures (T-p), which suggests a heat source possibly from plume material. At elevated T-p, LMC associated decompression melts occurs at a maximum depth of similar to 150 km beneath the RVP. We suggest upwelling due to LMC entrains plume materials resulting in melt generation beneath the RVP.
机译:龙圭火山区(RVP)是东非裂谷(EAR)贫岩浆西部分支内岩浆辅助裂谷作用异常区域的火山中心。RVP次岩石圈熔体的来源令人费解,特别是因为火山作用高度局部化,不像耳朵的东支。一些研究表明,RVP下方的亚岩石圈熔体来源于上地幔的热扰动,该扰动与来自西南部的非洲超级地幔柱分支有关,而其他研究则提出了类似的机制,但来自从东北方向转向坦桑尼亚克拉通周围的肯尼亚地幔柱。另一种可能性是由于岩石圈较薄的岩石圈调制对流(LMC),从上升流的亚岩石圈地幔减压熔融。作者验证了一个假设,即供给RVP的亚岩石圈熔体可以由LMC生成。我们开发了RVP和马拉维裂谷下方LMC的三维热机械模型,并限制了LMC产生亚岩石圈熔体的参数。我们假设岩石圈为刚性岩石圈,并对亚岩石圈地幔使用无水橄榄岩的非牛顿、温度、压力和孔隙度相关蠕变定律。我们发现了RVP下方LMC的上升流模式。上升流只在地幔潜在温度(T-p)升高时产生熔体,这表明热源可能来自地幔柱物质。在T-p升高时,LMC相关减压融化发生在RVP下方150 km的最大深度处。我们认为,由于LMC夹带羽流物质,导致RVP下方产生熔体,从而导致上升流。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号