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The Damage Appraisal on Elemental Sulfur Deposition in High Sulfur Content Gas Reservoirs

机译:高硫含量气藏中元素硫沉积的损伤评估

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Research on the elemental sulfur deposition belongs to one of the most important tasks in the development of high sulfur content gas reservoirs. In order to evaluate the formation damage from elemental sulfur deposition in the developing process of the sour gas reservoir accurately, experimental procedures are devised to establish measurement method for determining elemental sulfur deposition by purchasing corresponding experimental accessories. The quantitative research on the elemental sulfur deposition is carried out for the first time at home and abroad. Natural carbonate cores and over-saturated natural sour gas are adopted to observe sulfur precipitation and plugging in the sulfur precipitation damage experiments, which is conducted under the condition of pressure and temperature close to actual reservoir as much as possible. Results illustrate that the sulfur deposition in core has little effect on the porosity with pressure decreased, but great impacts on the permeability. The damage factor of permeability increases with rising initial pressure, and temperature has rarely influence on the sulfur deposition with the same initial pressure. Furthermore, the declining permeability of core results in increasing the damage to the permeability, which means sulfur deposition will cause more harm in low permeability formation.Therefore, it is essential to lay full emphasis on the sulfur deposition during the development of sour gas reservoirs. The reasonable and efficient development strategy can be achieved by alleviating the elemental sulfur deposition as far as possible.
机译:元素硫沉积研究属于高硫含量气藏开发中最重要的任务之一。为了准确地评估元素硫沉积中的形成损伤,精确地,设计了实验程序,建立了通过购买相应的实验配件来确定元素硫沉积的测量方法。对元素硫沉积的定量研究是在国内外首次进行的。采用天然碳酸核和过饱和的天然酸气体观察硫沉淀和堵塞在硫沉淀损伤实验中,在压力和温度的情况下尽可能地接近实际储层的条件进行。结果表明,核心沉积对具有压力降低的孔隙率几乎没有影响,而是对渗透性的影响很大。渗透率的损伤因子随着初始压力上升而增加,并且温度很少对具有相同初始压力的硫沉积。此外,核心结果在增加对渗透性装置,该装置硫沉积将导致在低渗透性formation.Therefore弊大于利损害的渗透性下降,这是必不可少的含硫气藏的开发过程中奠定充分强调硫沉积。可以通过尽可能减轻元素硫沉积来实现合理和有效的发展策略。

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