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Innovative use of rate-transient analysis methods to obtain hydraulic-fracture properties for low-permeability reservoirs exhibiting multiphase flow

机译:率瞬变分析方法的创新性使用,以获得具有多相流的低渗透油藏的水力压裂特性

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Multifractured horizontal wells, while enabling commercial production from unconventional gas and light-oil reservoirs, are challenging to analyze quantitatively to obtain reservoir and hydraulic-fracture properties. Production rates and flowing pressures gathered immediately after hydraulic-fracture stimulation (flowback) and over a longer time period (on-line production) can be interpreted for hydraulic-fracture properties such as fracture surface area or half-length and fracture conductivity, but dynamic fracture properties and multiphase flow during both stages of production can complicate the analysis. Recent studies have suggested that flowback data can provide early insight into these fracture properties if high-resolution fluid rates/pressures are gathered, but the physics of the process are complex, and analytic methods for interpretation are at an early stage of development. Analytic methods for longer-term production data analysis, although better established, are still limited primarily to single-phase flow and simple fracture and reservoir behavior. Rate-transient methods can be applied to both flowback and long-term production data to quantify hydraulic-fracture properties and changes in effective hydraulic-fracture length during production. For the flowback period, simplified analytic methods have been developed for before-breakthrough production of hydraulic-fracturing fluids and after-breakthrough production of hydraulic-fracture and reservoir fluids. These methods are still under development, and early applications can be illustrated. For long-term production analysis, classic rate-transient analysis techniques, such as the square-root-of-time plot, have been modified to account for multiphase flow and stress-sensitive permeability exhibited by low-permeability gas condensate and black-oil reservoirs producing below saturation pressure. A field example consisting of a multifractured horizontal well completed in a tight-oil reservoir isused to to compare hydraulic-fracture properties derived from flowback and long-term production data. Although flowback analysis yields hydraulic-fracture half-lengths consistent with hydraulic-fracture modeling results, long-term production analysis yields much smaller fracture half-lengths, possibly because of breakthrough of gas once bubble-point pressure is reached. Additional mechanisms for effective producing fracture half-length reduction can be proposed. Another important observation is that estimation of fracture properties from long-term production analysis of a reservoir producing below saturation pressure can be in significant error if the estimates are derived from techniques assuming single-phase flow. Corrections to the analytic methods for multiphase flow yield fracture half-lengths consistent with those obtained from history matching using rigorous numerical simulation. In a preliminary analysis, the techniques under development are intended to aid hydraulic-fracture evaluation and design in tight reservoirs that exhibit complex flow characteristics. Furthermore, implications of the findings will be important to assist in designing well operations to maximize well performance.
机译:多裂口水平井在使非常规天然气和轻油储层能够商业化生产的同时,要进行定量分析以获得储层和水力压裂性能也面临着挑战。水力压裂特性(例如返流)和较长时间(在线生产)后立即收集的生产率和流动压力可以解释为水力压裂特性,例如裂缝的表面积或半长和裂缝的电导率,但动态的生产的两个阶段的裂缝特性和多相流会使分析复杂化。最近的研究表明,如果收集高分辨率的流体速率/压力,回流数据可以对这些裂缝特性提供早期见解,但是该过程的物理过程很复杂,解释的解析方法还处于开发的早期阶段。长期生产数据分析的分析方法虽然建立得较好,但仍主要限于单相流以及简单的裂缝和储层行为。速率瞬变方法可用于回流和长期生产数据,以量化生产过程中的水力压裂特性和有效水力压裂长度的变化。对于返排期,已经开发了简化的分析方法用于水力压裂液的突破性生产和水力压裂液和储层流体的突破性生产。这些方法仍在开发中,可以说明早期的应用。对于长期生产分析,经典的速率瞬变分析技术(例如时间的平方根图)已被修改,以解决低渗透率凝析油和黑油所表现出的多相流和应力敏感渗透率的问题。产生低于饱和压力的储层。现场实例由在致密油储层中完井的多裂口水平井组成,用于比较从回流和长期生产数据得出的水力压裂特性。尽管返排分析得出的水力压裂半长度与水力压裂模型结果一致,但长期生产分析产生的压裂半长度小得多,这可能是因为一旦达到泡点压力,气体就会突破。可以提出有效降低断裂半长的其他机制。另一个重要的观察结果是,如果从假设单相流的技术中得出的数据,从对饱和压力以下的储层进行长期生产分析得出的裂缝特性估算值可能会产生重大误差。对多相流分析方法的修正产生的裂缝半长与使用严格的数值模拟从历史匹配中获得的裂缝半长一致。在初步分析中,正在开发的技术旨在帮助显示复杂流量特征的致密油藏进行水力压裂评估和设计。此外,研究结果的意义对于协助设计井作业以最大化井性能至关重要。

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