...
首页> 外文期刊>Geochemistry, geophysics, geosystems >Ocean Basalt Simulator version 1 (OBS1): Trace element mass balance in adiabatic melting of a pyroxenite-bearing peridotite
【24h】

Ocean Basalt Simulator version 1 (OBS1): Trace element mass balance in adiabatic melting of a pyroxenite-bearing peridotite

机译:海洋玄武岩模拟器版本1(OBS1):含辉石岩的橄榄岩绝热熔融过程中的微量元素质量平衡

获取原文
获取原文并翻译 | 示例
           

摘要

We present a new numerical trace element mass balance model for adiabatic melting of a pyroxenite-bearing peridotite for estimating mantle potential temperature, depth of melting column, and pyroxenite fraction in the source mantle for a primary ocean basalt/picrite. The Ocean Basalt Simulator version 1 (OBS1) uses a thermodynamic model of adiabatic melting of a pyroxenite-bearing peridotite with experimentally/thermodynamically parameterized liquidus-solidus intervals and source mineralogy. OBS1 can be used to calculate a sequence of adiabatic melting with two melting models, including (1) melting of peridotite and pyroxenite sources with simple mixing of their fractional melts (melt-melt mixing model), and (2) pyroxenite melting, melt metasomatism in the host peridotite, and melting of the metasomatized peridotite (source-metasomatism model). OBS1 can be used to explore (1) the fractions of peridotite and pyroxenite, (2) mantle potential temperature, (3) pressure of termination of melting, (4) degree of melting, and (5) residual mode of the sources. In order to constrain these parameters, the model calculates a mass balance for 26 incompatible trace elements in the sources and in the generated basalt/picrite. OBS1 is coded in an Excel spreadsheet and runs with VBA macros. Using OBS1, we examine the source compositions and conditions of the mid-oceanic ridge basalts, Loihi-Koolau basalts in the Hawaiian hot spot, and Jurassic Shatsky Rise and Mikabu oceanic plateau basalts and picrites. The OBS1 model shows the physical conditions, chemical mass balance, and amount of pyroxenite in the source peridotite, which are keys to global mantle recycling.
机译:我们提出了一种新的数值微量元素质量平衡模型,用于对含辉石岩的橄榄岩进行绝热熔融,以估算地幔潜在温度,熔融柱深度和原始洋玄武岩/苦味质在源地幔中的辉石体分数。海洋玄武岩模拟器第1版(OBS1)使用热解模型,对含辉石岩的橄榄岩进行绝热熔融,并通过实验/热力学参数化了液相线-固相线的间隔和源矿物学。 OBS1可用于通过两种熔融模型来计算绝热熔融的序列,包括(1)橄榄岩和辉石矿源的熔融及其部分熔融物的简单混合(熔融-熔融混合模型),以及(2)辉石矿的熔融,熔融变质作用在宿主橄榄岩中,以及交代的橄榄岩融化(源-致突变模型)。 OBS1可用于研究(1)橄榄岩和辉绿岩的馏分,(2)地幔势温度,(3)融化终止压力,(4)融化度和(5)源的残留模式。为了约束这些参数,模型为源中和生成的玄武岩/苦味粉中的26种不相容的痕量元素计算了质量平衡。 OBS1在Excel电子表格中编码,并与VBA宏一起运行。使用OBS1,我们检查了中海洋脊玄武岩,夏威夷热点的Loihi-Koolau玄武岩以及侏罗纪Shatsky Rise和Mikabu大洋高原玄武岩和苦味岩的来源组成和条件。 OBS1模型显示了源橄榄岩中的物理条件,化学质量平衡和辉石岩的数量,这是全球地幔循环的关键。

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