首页> 外文学位 >Forced dispersion of liquefied natural gas vapor clouds with water spray curtain application.
【24h】

Forced dispersion of liquefied natural gas vapor clouds with water spray curtain application.

机译:使用喷水帘幕强制分散液化天然气蒸气云。

获取原文
获取原文并翻译 | 示例

摘要

There has been, and will continue to be, tremendous growth in the use and distribution of liquefied natural gas (LNG). As LNG poses the hazard of flammable vapor cloud formation from a release, which may result in a massive fire, increased public concerns have been expressed regarding the safety of this fuel. In addition, regulatory authorities in the U.S. as well as all over the world expect the implementation of consequence mitigation measures for LNG spills. For the effective and safer use any safety measure to prevent and mitigate an accidental release of LNG, it is critical to understand thoroughly the action mechanisms. Water spray curtains are generally used by petro-chemical industries to prevent and mitigate heavier--than-air toxic or flammable vapors. It is also used to cool and protect equipment from heat radiation of fuel fires. Currently, water spray curtains are recognized as one of the economic and promising techniques to enhance the dispersion of the LNG vapor cloud formed from a spill.;Usually, water curtains are considered to absorb, dilute, disperse and warm a heavier-than-air vapor cloud. Dispersion of cryogenic LNG vapor behaves differently from other dense gases because of low molecular weight and extremely low temperature. So the interaction between water curtain and LNG vapor is different than other heavier vapor clouds. Only two major experimental investigations with water curtains in dispersing LNG vapor clouds were undertaken during the 1970s and 1980s. Studies showed that water spray curtains enhanced LNG vapor dispersion from small spills. However, the dominant phenomena to apply the water curtain most effectively in controlling LNG vapor were not clearly demonstrated.;The main objective of this research is to investigate the effectiveness of water spray curtains in controlling the LNG vapor clouds from outdoor experiments. A research methodology has been developed to study the dispersion phenomena of LNG vapor by the action of different water curtains experimentally. This dissertation details the research and experiment development. Small scale outdoor LNG spill experiments have been performed at the Brayton Fire Training Field at Texas A&M University. Field test results regarding important phenomena are presented and discussed. Results have determined that the water curtains are able to reduce the concentration of the LNG vapor cloud, push the vapor cloud upward and transfer heat to the cloud. These are being identified due to the water curtain mechanisms of entrainment of air, dilution of vapor with entrained air, transfer of momentum and heat to the gas cloud. Some of the dominant actions required to control and disperse LNG vapor cloud are also identified from the experimental tests. The gaps are presented as the future work and recommendation on how to improve the experiments in the future. This will benefit LNG industries to enhance its safety system and to make LNG facilities safer.
机译:液化天然气(LNG)的使用和分配已经并将继续保持巨大增长。由于液化天然气会造成释放时形成易燃蒸气云的危险,可能导致大火,因此公众对此燃料的安全性表示了越来越高的关注。此外,美国以及世界各地的监管机构都希望对LNG泄漏采取减轻影响的措施。为了更有效,更安全地使用任何安全措施,以防止和减轻LNG的意外释放,至关重要的是,全面了解其作用机理。石油化学工业通常使用喷水帘来防止和减轻重于空气的有毒或易燃蒸气。它也可用于冷却和保护设备免受燃料火的热辐射。目前,水幕被认为是增强溢油形成的LNG蒸气云扩散的经济和有前途的技术之一;通常,水幕被认为可以吸收,稀释,分散和加热比空气重的空气蒸气云。由于分子量低且温度极低,因此低温LNG蒸气的扩散行为与其他稠密气体不同。因此,水幕与LNG蒸气之间的相互作用不同于其他较重的蒸气云。在1970年代和1980年代期间,仅进行了两次使用水幕分散LNG蒸气云的大型实验研究。研究表明,喷水帘增强了少量泄漏造成的LNG蒸气扩散。然而,尚未清楚地证明将水帘最有效地用于控制LNG蒸气的主要现象。本研究的主要目的是通过室外实验研究喷水帘在控制LNG蒸气云中的有效性。已经开发了一种研究方法,以通过不同水幕的作用来研究LNG蒸气的扩散现象。本文详细介绍了研究和实验开发。在德克萨斯A&M大学的布雷顿消防训练场进行了小规模的室外LNG泄漏实验。提出并讨论了有关重要现象的现场测试结果。结果表明,水幕能够降低LNG蒸气云的浓度,向上推动蒸气云并将热量传递给云。可以通过夹带空气,用夹带的空气稀释蒸气,将动量和热量传递到气云的水幕机理来识别这些现象。从实验测试中还可以确定控制和分散LNG蒸气云所需的一些主要作用。差距是作为未来的工作提出的,并就如何改进未来的实验提出了建议。这将使液化天然气行业受益,以增强其安全系统并提高液化天然气设施的安全性。

著录项

  • 作者

    Rana, Morshed Ali.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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