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首页> 外文期刊>Transport in Porous Media >Experimental Ivestigation of the Temperature and Pore Pressure Effect on Permeability of Lignite Under the In Situ Condition
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Experimental Ivestigation of the Temperature and Pore Pressure Effect on Permeability of Lignite Under the In Situ Condition

机译:原位条件下温度和孔压对褐煤渗透性影响的实验研究

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摘要

The worldwide primary demand of energy will keep rising over the coming decades. It becomes essential and desirable to exploit lignite, 23 % reservation of the whole coal energy, by a suitable and effective technique. However, the current technology limitations of the exploiting and utilizing of lignite have caused low exploiting rate and high pollution situation. Owing to the development of the in situ gasification techniques, the lignite has become more attractive in the energy field than ever. The permeability of coal is a crucial factor in determining the tars (liquid phases) and gases production during the in situ gasification process. And the transport properties of the coal will in turn affect the thermal and chemical-mechanical reactions. Here, in this work, the permeability of lignite has been tested from room temperature (25 ℃) up to as high as 650 ℃ through a triaxial rock permeability testing system under different pore pressures. A remarkable decrease of permeability can be observed during the whole temperature zone (25-650 ℃) as the pore pressure increasing. The permeability curve versus temperature up to 650 ℃ has been divided into four stages based on the three peak values of the permeability. The competition between the strength of the frame structure with the shrinkage due to pyrolysis determines the significant fluctuation of the permeability versus temperature. Furthermore, the combined effect of temperature and pressure shows that the valleys and peaks in stage Ⅱ will shift to higher temperature zone, while the valleys and peaks stay in the same temperature place in stage Ⅲ and Ⅳ. The current investigation results of the permeability property of lignite will provide essential and valuable information for the exploiting and utilizing of lignite, especially by the in situ pyrolysis technique.
机译:在未来的几十年中,全球能源的主要需求将持续增长。通过合适而有效的技术开采褐煤(占全部煤炭能量的23%)成为必不可少的需求。然而,目前褐煤开发利用的技术局限性导致褐煤的低开发率和高污染态势。由于原位气化技术的发展,褐煤在能源领域比以往任何时候都更具吸引力。煤的渗透性是确定原位气化过程中焦油(液相)和产气量的关键因素。煤的传输特性反过来会影响热反应和化学机械反应。在这里,通过三轴岩石渗透率测试系统,在不同的孔隙压力下,从室温(25℃)到高达650℃,对褐煤的渗透率进行了测试。随着孔隙压力的增加,在整个温度区域(25-650℃),渗透率明显下降。根据渗透率的三个峰值,渗透率与温度(最高650℃)的关系曲线分为四个阶段。框架结构强度与热解收缩之间的竞争决定了渗透率随温度的显着波动。此外,温度和压力的共同作用表明,Ⅱ期的谷值和峰值将移至较高的温度区,而Ⅲ,Ⅳ期的谷值和峰值则保持在相同的温度位置。当前褐煤渗透性的研究结果将为褐煤的开发和利用,特别是原位热解技术提供重要和有价值的信息。

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