1)  Gas pocket
储气囊
2)  gas storage
储气
1.
At present,the exploration of such new technologies as transportation and storage of solid-state natural gas et al on hydrates have developed quickly,but the applications in these fields are all barried by some factors,such as low density of gas storage,slow rate of formation and long induction period.
目前基于水合物的新技术开发特别是天然气的固态输送和储藏等都发展迅速,但这些领域的应用均受到水合物储气密度低、生成速度慢以及诱导时间长等因素的阻碍。
2.
N gasholder and flexible seal gasholder in blast furnace gas storage.
分析了橡胶膜密封储气罐及曼型稀油密封储气罐用于高炉煤气储存的性能比较。
3.
Discussion is made on the technological problems in CNG fueling station, including metering, compression and dehydration, gas storage and high pressure pipeline.
探讨了压缩天然气加气站计量、压缩及脱水、储气、高压管道方面的技术问题。
3)  storage
储气
1.
Experimental investigation on methane storage in hydrate form;
甲烷水合物储气实验研究
2.
Micellar surfactant solutions were found to increase gas hydrate formation rate and storage capacity.
实验研究表明 ,表面活性剂胶束溶液可加快水合物的形成和提高水合物的储气质量。
4)  gas storage
储气库
1.
Study and application of tightness testing technology for salt cavern gas storage;
盐穴储气库密封测试技术的研究及应用
2.
Design method for geometry of dissolution cavity of salt gas storage considering the stability;
盐穴储气库溶腔几何形状的设计方法
3.
Numerical simulation research on long-term stability of gas storage in Jintan Salt Mine;
金坛盐矿老腔储气库长期稳定性分析数值模拟
5)  natural gas storage
储气库
1.
Investigation on optimized gas recovery velocity of natural gas storage in salt rock layer by numerical simulation;
盐岩储气库最佳采气速率数值模拟研究
2.
Underground natural gas storage (UGS) can be categorized into 4 types, including depleted oil and gas reservoir, aquifer, salt cavern and mined cavern.
地下储气库包括枯竭油气藏、含水层、盐穴和矿坑等四种类型,经过50多年的发展已经成为一种成熟的应用技术,目前地下储气库技术正朝着以下趋势发展:①加强气库的上下游协调优化,提高储气库的协调能力;②加强地下储气库优化管理,提高储气库的利用效率;③在油藏和含水层储气库领域进行实验和摸索;④盐穴储气库建库技术将得到进一步发展。
3.
Salt rock has very low penetrability and good creep behavior, and can ensure the leak tightness of the natural gas storage.
针对我国盐矿盐层夹层多、杂质多的特点,本文以西气东输金坛盐矿储气库为工程背景,对盐岩力学特性及储气库建设中关键问题,开展了以下几个方面的研究工作: 1。
6)  gas-storing property
储气性能
1.
This article discusses the synthesis methods of the three-dimension transition metal coordinate polymer with nano-pore,mainly through selecting proper ligand to enlarge nanoporous volume and increase the stability of the polymer in order to enhance its gas-storing property.
综述了具有纳米孔道的过渡金属三维配位聚合物的合成方法,主要是通过选择合适的配体来增大孔道和提高配合物的热稳定性,达到增强储气性能的目的。
参考词条
补充资料:储层描述(见油气田储层评价)


储层描述(见油气田储层评价)
reseroir evaluation of oil and gas field

  储层描述(reseroir evaluation of 011 and gasfield)见油气田储层评价。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。