Opportunities in Utilization of Digital Twins in Unconventional Gas Fields: Enhancing Efficiency and Performance through Virtual Replication

Nouf Alsulaiman, Karri Reddy, Uchenna Odi, Jaime Rabines, C. Temizel
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Abstract

Digital twin technology offers significant opportunities for the utilization and optimization of unconventional gas fields by providing virtual replicas of physical assets and processes. The idea of a digital twin is to build a model completely devoid of the typical physics and equations that the analytical or numerical simulation model usually depends on. A virtual twin is a model that is purely data driven without any physical context. This paper explores the potential benefits and applications of digital twins in unconventional gas fields, focusing on enhancing operational efficiency, improving production performance, and enabling proactive decision-making. This study is solely based on synthetic/public data, it doesn't include any privileged or confidential data. Digital twins serve as virtual counterparts of physical assets, capturing real-time data and simulating their behavior in a dynamic and integrated environment. In the context of unconventional gas fields, digital twins enable operators and engineers to monitor, analyze, and optimize various aspects of field operations, including reservoir behavior, well performance, hydraulic fracturing, surface facilities, and production systems. One of the key opportunities provided by digital twins is the ability to enhance reservoir understanding and optimize production performance. By integrating real-time data from sensors, downhole monitoring devices, and production measurements, digital twins enable the modeling and simulation of reservoir behavior, predicting key performance indicators such as production rates, pressure profiles, and fluid flow. This facilitates proactive decision-making for reservoir management, well placement, and production optimization. Digital twins also enable the optimization of hydraulic fracturing operations in unconventional gas fields. By integrating geological, geophysical, and engineering data, digital twins provide insights into fracture propagation, stimulation effectiveness, and fracture network connectivity. This allows for the optimization of completion designs, well spacing, and fracturing parameters, leading to improved well performance and increased hydrocarbon recovery. Digital twins enhance the monitoring and control of surface facilities and production systems in unconventional gas fields. By capturing real-time data from sensors and equipment, digital twins facilitate predictive maintenance, early fault detection, and optimization of operational parameters. This results in improved operational efficiency, reduced downtime, and optimized production rates. The paper discusses the applications and benefits of digital twins in unconventional gas fields through case studies and industry examples. It highlights the successful implementation of digital twin technology, showcasing the achieved improvements in operational efficiency, production performance, and cost optimization. The findings of this study contribute to the advancement of digital twin utilization in the oil and gas industry, specifically in unconventional gas fields. By leveraging digital twins, operators and engineers can gain real-time insights, optimize operations, and make informed decisions, leading to increased operational efficiency, reduced costs, and improved overall performance in unconventional gas field developments.
非常规气田利用数字孪生的机遇:通过虚拟复制提高效率和性能
数字孪生技术通过提供物理资产和过程的虚拟复制品,为非常规气田的利用和优化提供了重要机遇。数字孪生的概念是建立一个完全没有典型物理和方程的模型,而分析或数值模拟模型通常依赖于这些物理和方程。虚拟孪生是一个纯粹由数据驱动的模型,没有任何物理背景。本文探讨了数字孪生在非常规气田中的潜在效益和应用,重点是提高运营效率、改善生产性能和实现前瞻性决策。本研究完全基于合成/公开数据,不包括任何特权或机密数据。 数字孪生作为物理资产的虚拟对应物,可捕捉实时数据并模拟其在动态综合环境中的行为。在非常规气田的背景下,数字孪生使运营商和工程师能够监控、分析和优化气田运营的各个方面,包括储层行为、油井性能、水力压裂、地面设施和生产系统。数字孪生提供的关键机遇之一是能够增强对储层的了解并优化生产性能。通过整合来自传感器、井下监测设备和生产测量的实时数据,数字孪生系统能够对油藏行为进行建模和模拟,预测生产率、压力曲线和流体流量等关键性能指标。这有助于为油藏管理、井位安排和生产优化做出前瞻性决策。数字孪生还能优化非常规气田的水力压裂作业。通过整合地质、地球物理和工程数据,数字孪生可深入了解裂缝传播、刺激效果和裂缝网络连接。这样就可以优化完井设计、井间距和压裂参数,从而改善油井性能,提高碳氢化合物采收率。 数字双胞胎增强了对非常规气田地面设施和生产系统的监测和控制。通过采集传感器和设备的实时数据,数字孪生系统有助于进行预测性维护、早期故障检测和优化运行参数。从而提高运行效率,减少停机时间,优化生产率。本文通过案例研究和行业实例,讨论了数字孪生在非常规气田中的应用和优势。论文重点介绍了数字孪生技术的成功实施,展示了在运营效率、生产性能和成本优化方面取得的改进。 本研究的发现有助于推动数字孪生技术在石油天然气行业,特别是非常规气田中的应用。通过利用数字孪生技术,运营商和工程师可以获得实时洞察、优化运营并做出明智决策,从而提高运营效率、降低成本并改善非常规气田开发的整体性能。
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