首页> 外文期刊>Geological Quarterly >An integrated system for macro-scale anhydrite classification
【24h】

An integrated system for macro-scale anhydrite classification

机译:大型硬石膏分类的集成系统

获取原文
获取原文并翻译 | 示例
       

摘要

Most anhydrite classification systems to date have focused primarily on the naming of anhydrite bodies, masses, or crystals themselves rather than focusing on both the mineral morphology and links to the sedimentary succession in which it occurs. Much of the reasoning for the lack of development of an integrated classification system for anhydrite may come from the inherent instability of the mineral, and therefore the difficulty making a link between any particular morphology and a specific formative process or environment. This sets anhydrite classification apart from other sedimentary classification schemes, as most of them (e.g., Dunham, McBride, etc.) naturally break into groups that can be related to sorting, textural maturity, mode of deposition, or other genetic process. A classification system for anhydrite has been developed that allows for information about the gross anhydrite volume and morphology, as well as host sediment type to be transmitted using a single type-name. This new integrated anhydrite classification scheme was developed using input from both previously developed schemes and field studies with a view to link anhydrite morphology and volume to precursor depositional process. These relationships have been shown to hold true in certain circumstances, with both gross anhydrite volume and morphology many times being characteristics that are particular to former depositional setting (bedded, laminated salinic anhydrite versus nodular sabkha anhydrite, as an example). By adding a host rock descriptor to the scheme, quite a bit of empirical information about the anhydrite-bearing rock is made available in a single name, which can then be more easily linked to genetic process. Such a scheme may have wide application in industry, where careful description and classification of anhydrite is a key component to understanding the distribution of reservoir rock types in the subsurface.
机译:迄今为止,大多数硬石膏分类系统都主要集中在硬石膏体,块体或晶体本身的命名上,而不是既着眼于矿物形态,又着眼于与其发生的沉积演替的联系。缺乏开发硬石膏综合分类系统的许多原因可能是矿物固有的不稳定性,因此很难在任何特定形态与特定形成过程或环境之间建立联系。这将硬石膏分类与其他沉积分类方案区分开来,因为它们中的大多数(例如Dunham,McBride等)自然会分成与分类,质地成熟度,沉积模式或其他遗传过程有关的组。已开发了硬石膏分类系统,该系统允许使用单个类型名称传输有关总硬石膏体积和形态以及基质沉积物类型的信息。这种新的综合硬石膏分类方案是使用先前开发的方案和现场研究的输入开发的,旨在将硬石膏的形态和体积与前体沉积过程联系起来。这些关系在某些情况下被证明是正确的,总的硬石膏体积和形貌很多时候都是以前的沉积环境所特有的特征(例如,层状,层积的盐化无水石膏与结核状萨卜哈硬石膏)。通过在方案中添加宿主岩描述符,可以以单个名称获得大量有关硬石膏的经验信息,然后可以更轻松地将其与遗传过程联系起来。这种方案可能在工业中有广泛的应用,对硬石膏的仔细描述和分类是理解地下储层岩石类型分布的关键组成部分。

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