天然气吸附储存脱附过程的动态模拟

张超, 鲁雪生, 顾安忠

张超, 鲁雪生, 顾安忠. 天然气吸附储存脱附过程的动态模拟[J]. 真空与低温, 2003, 9(1): 21-24.
引用本文: 张超, 鲁雪生, 顾安忠. 天然气吸附储存脱附过程的动态模拟[J]. 真空与低温, 2003, 9(1): 21-24.
ZHANG Chao, LU Xue-sheng, GU An-zhong. THE DYNAMIC SIMULATION DURING DISCHARGE OF NATURAL GAS ADSORPTION STORAGE[J]. VACUUM AND CRYOGENICS, 2003, 9(1): 21-24.
Citation: ZHANG Chao, LU Xue-sheng, GU An-zhong. THE DYNAMIC SIMULATION DURING DISCHARGE OF NATURAL GAS ADSORPTION STORAGE[J]. VACUUM AND CRYOGENICS, 2003, 9(1): 21-24.

天然气吸附储存脱附过程的动态模拟

详细信息
    作者简介:

    张超(1974-),男,湖北省汉川市人,博士研究生,从事天然气和氢气吸附储存方面的研究.

  • 中图分类号: TQ517.1;O414.1

THE DYNAMIC SIMULATION DURING DISCHARGE OF NATURAL GAS ADSORPTION STORAGE

  • 摘要: 通过热动力学计算,认识了脱附过程当中储罐内温度剖面分布的典型特征:储罐轴心处的温度下降幅度最大。分析了脱附过程当中储罐壁的热交换、吸附剂的导热系数以及储罐内的初始压力对储罐内的温度剖面的影响。结论是加强储罐外壁的热交换、增大吸附剂的导热系数皆能改善吸附储罐内的温度剖面。
    Abstract: With heat dynamics computation, the typical feature of temperature section plane during discharge in storage system is drawn: the drop extent on storage system axes is the largest. The effects of heat exchage of storage system wall, thermal conductivity of carbon adsorbent, and initial pressure in storage system on temperature profile have been analyzed. The conclusion is drawn that enbancing heat exchange of storage system wall and thermal conductivity of carbon adsorbent can improve temperature section plane of storage system.
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出版历程
  • 收稿日期:  2002-08-14

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