An Integrated Reservoir Characterization in Overpressure and Complex Sandstone Reservoirs for Hybrid Reservoir Modeling and Oil Productivity

M. Gibrata, G. Ameish, Yanfidra Djanuar, Mohammad Lamine, Jose Lozano
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Abstract

A Reliable reservoir characterization and model are useful for reservoir development in overpressure and complex reservoirs. The field has overpressure, multi fluid contacts, multi reservoir subunits, structural and stratigraphic sand discontinuities. The reservoir properties and quality decrease with increase of depth due to overburden compaction. However rock quality is useful for oil in place and productivity. Therefore, reliable reservoir characterization in deep reservoirs and estimation of fluids in place requires an integrated subsurface data approach. Overpressure reservoir has been observed and evaluated in some reservoirs, it tends to preserve porosity and has sufficient permeability for oil productivity from the deep reservoirs. Image resistivity/density log and chromatography data have been used to identify minor fault, gas/fluid evaluation and update the reservoir model. An integrated petrophysical evaluation has been implemented in reservoir characterization. A reliable in-house permeability log has been developed from porosity, clay bound, pore size, core and mobility data. It has used the of hybrid saturation height model that based on SCAL data including capillary pressure and Relative Permeability data for every reservoir rock type and fluid contacts for subunits. The advanced evaluation approach of subsurface and well test data has been used to provide reliable and good of reservoir properties and results on porosity, permeability, fluid contacts, reservoir rock type and initial water saturation in deep and overpressure reservoirs. The saturation height model (SHM) has been used, a quasi-SHM for unavailable core data in deep reservoir and PVT data have been used in the evaluation. The suitable open and cased hole logs data such as image resistivity/density, chromatography, pulse-neutron capture and production logs have been used to verify fault, fluid contacts, contribution, water saturation changes and production optimization. For every reservoir subunits, the formation pressure has been used to identify an initial oil water contact, reservoir subunits evaluation and thus it has provided SHM for complex reservoir modeling. The study has provided reliable reservoir characterization, reservoir modeling and for the development for multi-layers, over pressure and complex sandstone reservoirs. The high overpressure deep reservoirs have contributed for good oil productivity. It provides support to improve oil recovery from reservoirs and future plan for reservoir development target. Therefore the integrated reservoir evaluation approach has provided reliable assurance and important benefits for reservoir characterization, optimization and reservoir management. The integrated hybrid approach in this paper shows the value of advanced reservoir characterization in overpressure and faulted complex reservoirs. It has utilized the integration updated open and cased-hole data, gas/fluid contacts, stress direction, advanced permeability, saturation height model and gas-fluid evaluation. The evaluation also has provided the reliable for reservoir modeling, oil in place volume and field development purposes.
超压复杂砂岩储层综合表征及混合储层建模与产油量研究
可靠的储层表征和模型对超压复杂油藏的开发具有重要意义。该油田具有超压、多流体接触、多储层亚单元、构造和地层砂结构不连续等特点。由于覆盖层压实作用,储层物性和质量随深度的增加而降低。然而,岩石质量对石油储量和产量是有用的。因此,要对深层储层进行可靠的储层表征,并对流体进行估算,就需要采用综合的地下数据方法。超压储层在一些油藏中已被观察和评价,超压储层倾向于保持孔隙度,具有足够的渗透率,有利于深部油藏采油。图像电阻率/密度测井和色谱数据已被用于识别小断层、气/流体评价和更新储层模型。在储层表征中,采用了综合岩石物性评价方法。根据孔隙度、粘土界、孔径、岩心和流度数据,开发了可靠的内部渗透率测井。采用了基于SCAL数据的混合饱和高度模型,该模型包括各种储层岩石类型的毛管压力和相对渗透率数据,以及亚单元的流体接触数据。采用先进的地下和试井资料评价方法,对深层和超压储层的孔隙度、渗透率、流体接触、储层岩石类型和初始含水饱和度等储层物性进行了可靠、良好的评价。利用饱和高度模型(SHM)、深层储层不可用岩心数据拟饱和高度模型和PVT数据进行评价。利用合适的裸眼和套管井测井数据,如图像电阻率/密度、色谱、脉冲中子捕获和生产测井,验证断层、流体接触、贡献、含水饱和度变化和生产优化。对于每个储层亚单元,地层压力可用于识别初始油水界面、储层亚单元评价,从而为复杂储层建模提供SHM。该研究为储层表征、储层建模及多层、超压、复杂砂岩储层开发提供了可靠依据。高超压深层储层具有良好的产油量。为提高油藏采收率和制定油藏开发目标提供支持。因此,储层综合评价方法为储层表征、储层优化和储层管理提供了可靠的保证和重要的效益。综合混合方法在超压断裂复杂储层中具有超前储层表征的价值。它利用了更新后的裸眼和套管井数据、气/液接触、应力方向、先进渗透率、饱和高度模型和气液评价。评价结果为储层建模、油藏储量和油田开发提供了可靠依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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