FIRE AND EXPLOSION SAFE TECHNOLOGY OF STORAGE AND REGASIFICATION OF LIQUEFIED PETROLEUM GAS

被引:1
|
作者
Shevtsov, S. A. [1 ]
Kargashilov, D. V. [1 ]
Shutkin, A. N. [1 ]
机构
[1] Minist Emergency Situat Russia, Voronezh Inst State Fire Serv, Voronezh, Russia
关键词
liquefied petroleum gas; isothermal storage; regasification; fire and explosion safety; vapor-compression refrigeration unit; energy saving;
D O I
10.1007/s10556-018-0435-x
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The technology of storage and regasification of liquefied petroleum gas that implies storage in an isothermal tank and overheating the gas with subsequent supply of the vapor phase to the consumer is offered. The necessary storage and regasification temperatures are achieved by means of utilizing a vapor-compression refrigeration unit in the technological process. The technology allows to improve energy efficiency of the processes, reduce fire-and-explosion hazard, minimize LPG losses, exclude conditions formation of a combustible environment, regulate the storage temperature of LPG of various composition and efficiency of the regasification process, and ensure the composition of volatilized LPG remains constant during regasification.
引用
收藏
页码:38 / 40
页数:3
相关论文
共 50 条
  • [21] ASSESSMENT OF MATHEMATICAL-MODELS FOR FIRE AND EXPLOSION HAZARDS OF LIQUEFIED PETROLEUM GASES
    CROCKER, WP
    NAPIER, DH
    [J]. JOURNAL OF HAZARDOUS MATERIALS, 1988, 20 (1-3) : 109 - 135
  • [22] Construction and Optimization of Liquefied Natural Gas Regasification Cold Energy Comprehensive Utilization System on Floating Storage Regasification Unit
    YAO Shouguang
    WANG Mengdi
    YAN Likun
    ZHANG Qiang
    YE Yong
    [J]. Journal of Thermal Science, 2022, 31 (06) : 1853 - 1867
  • [23] Construction and Optimization of Liquefied Natural Gas Regasification Cold Energy Comprehensive Utilization System on Floating Storage Regasification Unit
    Shouguang Yao
    Mengdi Wang
    Likun Yan
    Qiang Zhang
    Yong Ye
    [J]. Journal of Thermal Science, 2022, 31 : 1853 - 1867
  • [24] Evaluation of explosion pressure of portable small liquefied petroleum gas cylinder
    Kartal, Fuat
    [J]. PROCESS SAFETY PROGRESS, 2020, 39 (02)
  • [25] Construction and Optimization of Liquefied Natural Gas Regasification Cold Energy Comprehensive Utilization System on Floating Storage Regasification Unit
    Yao Shouguang
    Wang Mengdi
    Yan Likun
    Zhang Qiang
    Ye Yong
    [J]. JOURNAL OF THERMAL SCIENCE, 2022, 31 (06) : 1853 - 1867
  • [26] The application of hydraulic fracturing in storage projects of liquefied petroleum gas
    Jing, F
    Sheng, Q
    Luo, CW
    Zeng, J
    [J]. FRACTURE AND STRENGTH OF SOLIDS VI, PTS 1 AND 2, 2006, 306-308 : 1509 - 1514
  • [27] Economic Process Selection of Liquefied Natural Gas Regasification: Power Generation and Energy Storage Applications
    Park, Jinwoo
    Lee, Inkyu
    You, Fengqi
    Moon, Il
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2019, 58 (12) : 4946 - 4956
  • [28] Effect of hydrogen on explosion characteristics of liquefied petroleum gas-air mixtures
    Wang, Jingyan
    Liang, Yuntao
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (06) : 4255 - 4263
  • [29] Computer simulation for the explosion of the mixture of air-LPG (liquefied petroleum gas)
    Qian, XM
    Feng, CG
    [J]. THEORY AND PRACTICE OF ENERGETIC MATERIALS, 1997, : 430 - 435
  • [30] Effect of Ignition Location and Vent on Hazards of Indoor Liquefied Petroleum Gas Explosion
    Wang, Yaxing
    Lian, Zheng
    Zhang, Qi
    [J]. COMBUSTION SCIENCE AND TECHNOLOGY, 2017, 189 (04) : 698 - 716