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Effect of Sulfur Deposition on Rock Permeability in Sour Gas Reservoir

机译:硫沉积对酸性气体储层岩石渗透性的影响

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Reduction in pressure and temperature generally reduces the solubility of sulfur in sour gas reservoir. Once the reservoir fluid has reached a sulfur-saturated state, further reduction in pressure and temperature will cause sulfur to deposit. Sulfur deposition in the formation, induced by a reduction in the solubility of the sulfur in the gas phase, may significantly reduce the inflow performance of sour gas wells and even wells have become completely plugged with sulfur in sour gas reservoir within several months. In this paper, effect of sulfur deposition on reservoir permeability in sour gas reservoir was investigated from a laboratory perspective. A series of displacement experiments were conducted using gas sample with H2S mole concentration of 14.99% and 24.69%, rock sample of permeability of 1.37, 3.6 and 46.5 millidarcy, different flow rates of 3.25 and 12.5cc/min, and average pore throat size in the range of 0.1 to 1.0 um. Experimental results indicated that the higher of hydrogen sulfide concentration have a severe effect on sulfur deposition and subsequently the rock permeability decreased rapidly. When element sulfur grain size is more than average pore throat size, rock permeability changed strongly. Through a regression analysis, variation of rock permeability (K vs. P) was linear relation under high pressure, while approximate exponential function under low pressure. This work will help engineers evaluate accurately well deliverability in sour gas reservoir.
机译:降低的压力和温度通常降低硫的酸性气体储存器中的溶解度。一旦贮存器流体已经达到了硫饱和的状态下,在压力和温度进一步降低将导致硫沉积。硫沉积在形成,通过在气相中的硫的溶解度的降低引起的,可能减少显著含硫气井和油井甚至的流入性能已经变得完全与酸气藏硫数月内堵塞。在本文中,在酸气藏储层渗透率硫沉积的效应从实验室透视调查。一系列的位移实验使用气体样品与H2S的摩尔浓度的14.99%和24.69%,1.37,3.6和46.5毫达西的渗透性的岩石样品,3.25和12.5cc / min的不同的流速,和平均孔径喉尺寸中所进行的0.1〜1.0的范围微米。实验结果表明,硫化氢浓度的较高有硫沉积产生严重影响,并且随后的岩石渗透率迅速下降。当硫元素粒径比平均孔喉尺寸更大,岩石渗透率强烈改变。通过回归分析,岩石渗透率(K与P)的变化是在高压下的线性关系,在低压下,同时近似指数函数。这项工作将帮助工程师评估含硫气藏准确气井产能。

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