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Development of the Strasshof Tief Sour-Gas Field Including Acid-Gas Injection Into Adjacent Producing Sour-Gas Reservoirs

机译:Strasshof Tief酸性气田的开发,包括向邻近的酸性酸性气藏注入酸气

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OMV operates two producing sour-gas reservoirs in lower Austria: the Reyersdorfer dolomite (shallow reservoir) and the Schoen-kirchen Uebertief dolomite (deep reservoir). A new, separate reservoir called the Perchtoldsdorfer dolomite (Strasshof Tief field) has been discovered, and options for how its acid gas can be handled are being investigated. The two currently producing reservoirs deliver to a gas plant with a 30-tonne/d sulfur plant. The sulfur plant is too small to accommodate the additional production. OMV has evaluated acid-gas injection as an alternative to a new, larger sulfur plant. Acid gas could be injected into either the Reyersdorfer dolomite or the Schoenkirchen Uebertief dolomite. In either case, injection would be occurring concurrently with production. Three injection scenarios are contemplated: 200, 400, and 800×l0~3 std m~3/d (6.4,12.8, and 25.6 MMcf/D). The applied acid-gas composition is carbon dioxide (CO_2) (80%), hydrogen sulfide (H_2S) (16%), nitrogen (N_2) (3%), and methane (CH_4 or C_1) (1%).rnThe intent of this project was to determine at a scoping level if sufficient injectivity and storativity are available in either the Reyersdorfer dolomite or the Schoenkirchen Uebertief dolomite. Compositional modeling and the prognosis of the breakthrough time at the producing wells were carried out to determine the contamination risk to existing production.rnThe simulation work included generating compositional numerical-simulation forecasts of production-rate/composition forecasts under concurrent injection/production scenarios; modeling in-situ miscibility and gravity-separation effects of acid gas; and evaluating risk scenarios for existing production to determine the optimal solution.
机译:OMV在下奥地利州经营着两个生产酸性气的储层:Reyersdorfer白云岩(浅储层)和Schoen-kirchen Uebertief白云岩(深储层)。已经发现了一个新的独立储层,称为Perchtoldsdorfer白云岩(Strasshof Tief油田),并且正在研究如何处理其酸性气体的各种选择。目前正在生产的两个储层将被输送到一个含30吨/天硫磺装置的天然气厂。硫磺厂太小,无法容纳额外的产量。 OMV已评估了使用酸性气体注入作为新的大型硫磺工厂的替代方案。可以将酸性气体注入Reyersdorfer白云岩或Schoenkirchen Uebertief白云岩中。无论哪种情况,注入都将与生产同时进行。设想了三种注入方案:200×400×800×10 3 std m〜3 / d(6.4、12.8和25.6MMcf / D)。施加的酸气成分为二氧化碳(CO_2)(80%),硫化氢(H_2S)(16%),氮气(N_2)(3%)和甲烷(CH_4或C_1)(1%)。rn该项目的目的是在范围上确定Reyersdorfer白云岩或Schoenkirchen Uebertief白云岩是否具有足够的注入性和储藏性。为了确定对现有生产的污染风险,对生产井进行了成分建模和突破时间的预测。rn模拟工作包括在并发注入/生产情景下生成生产率/成分预测的成分数值模拟预测。模拟酸性气体的原位混溶性和重力分离效应;评估现有生产的风险情景,以确定最佳解决方案。

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