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Field-Project Designs for Carbon Dioxide Sequestration and Enhanced Coalbed Methane Production

机译:二氧化碳封存和提高煤层气产量的现场项目设计

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摘要

Worldwide concerns about global warming and possible contributions to it from anthropogenic carbon dioxide have become important during the past several years.Coal seams may make excellent candidates for CO_2 sequestration;coal-seam sequestration could enhance methane production and improve sequestration economics.Reservoir-simulation computations are an important component of any engineering design before carbon dioxide is injected underground.We have performed such simulations for a hypothetical pilot-scale project in representative coal seams.In these simulations we assume four horizontal production wells that form a square,that is,two wells drilled at right angles to each other forming two sides of a square,with another pair of horizontal wells similarly drilled to form the other two sides.Four shorter horizontal wells are drilled from a vertical well at the center of the square,forming two straight lines orthogonal to each other.By modifying coal properties,especially sorption rate,we have approximated different types of coals.By varying operational parameters,such as injector length,injection well pressure,time to injection,and production well pressure,we can evaluate different production schemes to determine an optimum for each coal type.Any optimization requires considering a tradeoff between total CO_2 sequestered and the rate of methane production.Values of total CO_2 sequestered and methane produced are presented for multiple coal types and different operational designs.
机译:在过去的几年中,全球范围内对全球变暖的担忧以及人为二氧化碳可能对全球变暖的影响变得越来越重要。煤层可能成为CO_2固存的极佳候选者;煤层固存可以提高甲烷的产生并改善固存的经济性。在将二氧化碳注入地下之前,它是任何工程设计的重要组成部分。我们已经对代表性煤层中的假设中试规模项目进行了这种模拟。在这些模拟中,我们假设四个水平生产井形成一个正方形,即两个彼此成直角钻的井形成一个正方形的两个侧面,另一对水平井也类似地钻成另外两个侧面。从正方形的中心的一个垂直井钻四个较短的水平井,形成两个直井相互正交的线。通过改变煤的性质,特别是吸附率e,我们已经估算出了不同类型的煤。通过改变喷油器长度,注入井压力,注入时间和生产井压力等运行参数,我们可以评估不同的生产方案来确定每种煤的最佳选择。需要考虑固存的CO_2总量与甲烷产生速率之间的权衡。针对多种煤种和不同的运行设计,提出了固存的CO_2总量和甲烷产生量的值。

著录项

  • 来源
    《Energy & fuels》 |2005年第6期|p.2287-2297|共11页
  • 作者单位

    National Energy Technology Laboratory,EG&G Technical Services,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,United States Department of Energy,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,Parso;

    National Energy Technology Laboratory,EG&G Technical Services,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,United States Department of Energy,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,Parso;

    National Energy Technology Laboratory,EG&G Technical Services,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,United States Department of Energy,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,Parso;

    National Energy Technology Laboratory,EG&G Technical Services,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,United States Department of Energy,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,Parso;

    National Energy Technology Laboratory,EG&G Technical Services,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,United States Department of Energy,Morgantown,West Virginia 26507-0880,National Energy Technology Laboratory,Parso;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

  • 入库时间 2022-08-18 00:43:30

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