From the perspective of geological zone selection for coalbed methane(CBM) development, the evaluation parameters(covering geological conditions and production conditions) of geological sweetspot for CBM development a...From the perspective of geological zone selection for coalbed methane(CBM) development, the evaluation parameters(covering geological conditions and production conditions) of geological sweetspot for CBM development are determined, and the evaluation index system of geological sweetspot for CBM development is established. On this basis, the fuzzy pattern recognition(FPR) model of geological sweetspot for CBM development is built. The model is applied to evaluate four units of No.3 Coal Seam in the Fanzhuang Block, southern Qinshui Basin, China. The evaluation results are consistent with the actual development effect and the existing research results, which verifies the rationality and reliability of the FPR model. The research shows that the proposed FPR model of geological sweetspot for CBM development does not involve parameter weighting which leads to uncertainties in the results of the conventional models such as analytic hierarchy process and multi-level fuzzy synthesis judgment, and features a simple computation without the construction of multi-level judgment matrix. The FPR model provides reliable results to support the efficient development of CBM.展开更多
中国南海高温高压油气藏开发过程中,井筒环空带压问题突出,一旦超过允许值将会影响安全生产。为了保证气井的正常生产,需要确定环空压力的合理范围,为此基于ISO 16530-1:2017标准和API RP 90-2的推荐做法,研究并建立了考虑管柱承压能力...中国南海高温高压油气藏开发过程中,井筒环空带压问题突出,一旦超过允许值将会影响安全生产。为了保证气井的正常生产,需要确定环空压力的合理范围,为此基于ISO 16530-1:2017标准和API RP 90-2的推荐做法,研究并建立了考虑管柱承压能力和关键节点校核的深水高温高压气井环空带压控制值计算模型以及一套环空压力管理图版。研究结果表明:(1)管柱承压能力计算主要针对环空对应的油管和套管;(2)关键节点校核计算主要针对井口装置、封隔器、井下安全阀和尾管悬挂器等;(3)建立了环空最小预留压力计算模型,以确保对深水高地层压力或井底高流压气井的环空施加一定的备压,保证井下管柱和工具在合理环空压力范围内正常工作;(4)以某深水气井为实例进行了计算与分析,得到了考虑和不考虑壁厚减薄情况下随投产时间变化的各环空带压控制值。结论认为,所建立的模型及图版应用于海上深水高温高压气井,使用简便、可操作性强,可以为深水高温高压气井及类似井的井筒环空压力管理提供借鉴。展开更多
基金Key Project of China National Natural Science Foundation (42230814,52234002)Research Program Foundation of Key Laboratory of Tectonics and Petroleum Resources (China University of Geosciences),Ministry of Education (TPR-2022-17)。
文摘From the perspective of geological zone selection for coalbed methane(CBM) development, the evaluation parameters(covering geological conditions and production conditions) of geological sweetspot for CBM development are determined, and the evaluation index system of geological sweetspot for CBM development is established. On this basis, the fuzzy pattern recognition(FPR) model of geological sweetspot for CBM development is built. The model is applied to evaluate four units of No.3 Coal Seam in the Fanzhuang Block, southern Qinshui Basin, China. The evaluation results are consistent with the actual development effect and the existing research results, which verifies the rationality and reliability of the FPR model. The research shows that the proposed FPR model of geological sweetspot for CBM development does not involve parameter weighting which leads to uncertainties in the results of the conventional models such as analytic hierarchy process and multi-level fuzzy synthesis judgment, and features a simple computation without the construction of multi-level judgment matrix. The FPR model provides reliable results to support the efficient development of CBM.
文摘中国南海高温高压油气藏开发过程中,井筒环空带压问题突出,一旦超过允许值将会影响安全生产。为了保证气井的正常生产,需要确定环空压力的合理范围,为此基于ISO 16530-1:2017标准和API RP 90-2的推荐做法,研究并建立了考虑管柱承压能力和关键节点校核的深水高温高压气井环空带压控制值计算模型以及一套环空压力管理图版。研究结果表明:(1)管柱承压能力计算主要针对环空对应的油管和套管;(2)关键节点校核计算主要针对井口装置、封隔器、井下安全阀和尾管悬挂器等;(3)建立了环空最小预留压力计算模型,以确保对深水高地层压力或井底高流压气井的环空施加一定的备压,保证井下管柱和工具在合理环空压力范围内正常工作;(4)以某深水气井为实例进行了计算与分析,得到了考虑和不考虑壁厚减薄情况下随投产时间变化的各环空带压控制值。结论认为,所建立的模型及图版应用于海上深水高温高压气井,使用简便、可操作性强,可以为深水高温高压气井及类似井的井筒环空压力管理提供借鉴。