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question:2.1Research On the Exploration and Development Data Governance (1)Establishing a Data Model Establish a unified data model that covers the exploration and development business of the oil field. The model should be stable, consistent, easy to use, and flexible enough to accommodate different application analysis requirements in the future. This will form a unified data model expansion specification to ensure the structural flexibility and scalability. (2)Master Data Management Implement centralized cleaning and enrichment of the most core and shared data (master data) from multiple businesses to ensure the consistency of master data among distributed systems. This provides accurate data sources for decision support and data warehouse systems. (3)Establishing Data Standards Preliminary establishment of data standard systems, including metadata standards and master data standards. Establish a data standard management mechanism to support the standardization of data construction, enhance control capabilities, and ensure data consistency in the application process. Establish a standard control update mechanism to constantly supplement, improve, update, optimize and accumulate data standards to better support business development and system integration. (4)Data Sharing and Exchange Provide data services based on unified rules, metadata, architecture, and tools to implement data exchange, integration, replication, and sharing functions. This meets the data exchange and management needs of different customer projects. (5)Data Life Cycle Clarify the life cycle of critical data, including data generation and transmission, data storage, data processing and application, and data disposal. Establish a sound data management system.翻译成中文

answer:2.1探索和开发数据治理的研究 (1)建立数据模型 建立一个覆盖油田勘探和开发业务的统一数据模型。该模型应稳定、一致、易用,并且足够灵活以适应未来不同的应用分析要求。这将形成一个统一的数据模型扩展规范,以确保结构的灵活性和可扩展性。 (2)主数据管理 实施中央化的最核心和共享数据(主数据)的清理和增强,以确保分布式系统之间的主数据一致性。这为决策支持和数据仓库系统提供准确的数据源。 (3)建立数据标准 初步建立数据标准体系,包括元数据标准和主数据标准。建立一个数据标准管理机制,支持数据建设标准化,增强控制能力,并确保应用过程中数据一致性。建立一个标准控制更新机制,不断补充、改进、更新、优化和累积数据标准,更好地支持业务发展和系统集成。 (4)数据共享和交换 基于统一规则、元数据、架构和工具提供数据服务,实现数据交换、集成、复制和共享功能。这满足不同客户项目的数据交换和管理需求。 (5)数据生命周期 明确关键数据的生命周期,包括数据生成和传输、数据存储、数据处理和应用以及数据处理。建立完善的数据管理系统。

question:2.2 Research On the Online Well Logging System (1)System Architecture and Technology Selection Research on the architecture, technology, advantages and disadvantages of the online well logging platform, including front-end display, back-end data processing, database storage, etc. (2)Data Acquisition Research on the data acquisition methods and accuracy of the online well logging platform, including sensor selection, data transmission protocols, etc. (3)Data Processing and Analysis Research on the data processing and analysis algorithms of the online well logging platform, including data cleaning, feature extraction, machine learning, etc. (4)User experience and Interface Design Research on the user experience and interface design of the online well logging platform, including operation processes, visualization effects, etc. (5)Application Developing a related system and applying it to the EBS Oilfield for online management and research of logging data.zhongwen

answer:2.2 在线测井系统的研究 (1)系统架构和技术选择 研究在线测井平台的架构、技术、优缺点,包括前端显示、后端数据处理、数据库存储等。 (2)数据采集 研究在线测井平台的数据采集方法和准确度,包括传感器选择、数据传输协议等。 (3)数据处理和分析 研究在线测井平台的数据处理和分析算法,包括数据清洗、特征提取、机器学习等。 (4)用户体验和界面设计 研究在线测井平台的用户体验和界面设计,包括操作流程、可视化效果等。 (5)应用 开发相关系统并将其应用于EBS油田,用于在线管理和研究测井数据。

question:2.3 Research On the 4D Wellbore System (1) Online System Architecture and Technology Selection Researching how to choose suitable online system architecture and technology to achieve online management and analysis of wellbore data in 3D enviroment. (2) Establishing a 3D Wellbore Research of how to collect and gather information and data related to oil wells, how to extract key information through data processing, and how to use professional 3D software for modeling to achieve the basic structure of the well and the layout of core components. (3)Reconstruct Well History in 3D Space Researching how to reconstruct the operational history of wells in 3D space, including downhole operations and equipment replacements, by processing and analyzing the collected data. This provides valuable support for oilfield production management, helping managers to better understand well conditions and make informed decisions about production planning. (4)Data Integration and Management The research focuses on how to integrate various types of wellbore-related information into an online platform for management, categorizing and managing them based on different business types. The study also aims to address data quality control, how to obtain relevant data continuously in the oilfield business system, how to access sensor data into the platform to achieve real-time data display. (5)Application Developing a related system and applying it to the ESB oilfield to help oilfield operators better understand wellbore status, predict production, and ensure safety by providing important information.zhongwen

answer:2.3 4D井筒系统的研究 (1)在线系统架构和技术选择 研究如何选择合适的在线系统架构和技术,实现在3D环境中对井筒数据的在线管理和分析。 (2)建立3D井筒 研究如何收集和整合与油井相关的信息和数据,如何通过数据处理提取关键信息,并如何使用专业的3D软件进行建模,实现井筒的基本结构和核心部件的布局。 (3)在3D空间中重建井筒历史 研究如何通过处理和分析收集到的数据,在3D空间中重建井筒的运行历史,包括井下作业和设备更换等。这为油田生产管理提供了有价值的支持,帮助管理者更好地了解井的状况,做出有根据的生产计划决策。 (4)数据集成和管理 重点研究如何将各种类型的井筒相关信息集成到在线平台,根据不同的业务类型对其进行分类管理。研究还旨在解决数据质量控制的问题,如何在油田业务系统中持续获取相关数据,如何将传感器数据接入平台,实现实时数据展示。 (5)应用 开发相关系统并将其应用于ESB油田,帮助油田操作人员更好地了解井筒状况,预测产量,并通过提供重要信息确保安全。

question:2.4 Research On the 3D Visualization and VR/AR Interactive of Oilfield Digital Model (1) Oilfield Digital Model Construction By collecting various data such as geology and geography of the oilfield, modeling software is used to construct an oilfield digital model, including reservoir structures, pipeline systems, equipment distribution, etc. (2) 3D Visualization Technology Using computer graphics technology and commercial modeling platforms such as Unreal and Unity, convert the oilfield digital model is into a 3D visualization image, enabling intuitive display of oilfield topography, geological structure, well location, equipment, and other information. (3)Augemented Reality and Virtual Reality Interaction Technology: Based on 3D visualization technology, virtual reality and augmented reality technology are introduced to create a virtual reality scene of the oilfield digital model, allowing for operations and gesture interactions within the model, such as reservoir model decomposition, well model decomposition, and interactive display of oilfield information. (4)Application Developing an EBS oilfield simulation model using VR/AR technology based on three dimensions: site, oilfield model, and wellbore model. The model will be presented and manipulated through the utilization of VR/AR technology, allowing for interactive exploration and gesture-based interactions. safety incidents.翻译

answer:2.4 油田数字模型的3D可视化和VR/AR交互研究 (1)油田数字模型构建 通过收集油田的地质和地理等各种数据,利用建模软件构建油田数字模型,包括储层结构、管道系统、设备分布等。 (2)3D可视化技术 利用计算机图形技术和商业建模平台如Unreal和Unity,将油田数字模型转化为3D可视化图像,实现对油田地形、地质结构、井位、设备等信息的直观展示。 (3)增强现实和虚拟现实交互技术 基于3D可视化技术,引入虚拟现实和增强现实技术,创建油田数字模型的虚拟现实场景,实现油田模型分解、井模型分解等操作和手势交互,以及油田信息的交互式展示。 (4)应用 基于三维场地、油田模型、井筒模型,采用VR/AR技术开发ESB油田仿真模型,通过 VR/AR 技术进行油田数字模型的展示和交互探索,实现手势交互操作。帮助预防安全事故的发生。

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