中海油服录井数据传输系统的设计与实现
发布时间:2018-08-25 19:26
【摘要】:本文所研究设计并实现的中海油服录井数据传输系统是以数据的采集、传输和接收为主线,提供录井数据采集管理、数据传输管理、录井数据接收管理、系统配置管理功能,实现对录井数据信息的采集、精准传输和录井数据的接收,最终获取多样的地下信息,对其进行分析的解释。中海油服录井数据传输系统采用分层的结构,最上层为用户层,为系统的用户提供操作页面,同时以数据层为技术,业务逻辑层为核心,最终生成表示层,用于用户界面。层与层之间不但相互独立而且相互联系,除此之外,系统还具有扩展能力,可以根据中海油服的实际需求添加新的业务功能。本系统采用Eclipse作为开发工具,Java为编程语言,结合JavaScript技术及Oracle数据库进行开发,同时按照系统需求分析、系统设计、系统实现、系统测试的思路对系统进行设计与实现。本文根据软件工程的思想,采用自顶向下和自底向上相结合的方法对系统进行设计,将系统划分为录井数据采集管理模块、数据传输管理模块、录井数据接收管理模块、系统配置管理模块四个主要模块,其中,每个模块又被划分为若干个小的子功能模块。井数据采集管理模块又分采集设备状态管理、实时数据采集设置、实时数据采集查看和实时数据采集管理;数据传输管理模块包括传输参数设置、传输状态管理、手动数据补发和传输加密设置;录井数据接收管理模块包括接收存储管理、数据综合查询、数据审核、手动修正、趋势量分析和累计量分析;系统配置管理模块包括设备管理、用户管理、日志管理和备份管理。
[Abstract]:The data transmission system of CNOOC suit mud logging is designed and implemented in this paper, which takes data acquisition, transmission and reception as the main line, and provides logging data collection management, data transmission management, mud logging data receiving management, system configuration management function. It realizes the acquisition of logging data, accurate transmission and receiving of logging data, and finally acquires various underground information and analyzes them. The data transmission system of CNOOC clothing mud logging adopts stratified structure, the upper layer is the user layer, which provides the operating page for the users of the system. At the same time, it takes the data layer as the technology, the business logic layer as the core, and finally generates the presentation layer for the user interface. The layers are not only independent but also related to each other. In addition the system has the ability to expand and add new business functions according to the actual requirements of CNOOC. The system adopts Eclipse as the programming language, combines JavaScript technology and Oracle database to develop the system, and designs and implements the system according to the system requirement analysis, system design, system realization and system test. According to the idea of software engineering, the system is designed by the combination of top-down and bottom-up methods. The system is divided into mud logging data acquisition and management module, data transmission management module, mud logging data receiving management module. There are four main modules in the system configuration management module, in which each module is divided into several small sub-function modules. Well data acquisition and management module is divided into acquisition equipment state management, real-time data acquisition settings, real-time data collection and view and real-time data acquisition management; data transmission management module includes transmission parameter setting, transmission state management, Manual data reissue and transmission infill setting; mud logging data receiving management module includes receiving storage management, data comprehensive query, data audit, manual correction, trend quantity analysis and accumulative quantity analysis; system configuration management module includes equipment management. User management, log management and backup management.
【学位授予单位】:东北大学
【学位级别】:硕士
【学位授予年份】:2016
【分类号】:TP311.52
本文编号:2203869
[Abstract]:The data transmission system of CNOOC suit mud logging is designed and implemented in this paper, which takes data acquisition, transmission and reception as the main line, and provides logging data collection management, data transmission management, mud logging data receiving management, system configuration management function. It realizes the acquisition of logging data, accurate transmission and receiving of logging data, and finally acquires various underground information and analyzes them. The data transmission system of CNOOC clothing mud logging adopts stratified structure, the upper layer is the user layer, which provides the operating page for the users of the system. At the same time, it takes the data layer as the technology, the business logic layer as the core, and finally generates the presentation layer for the user interface. The layers are not only independent but also related to each other. In addition the system has the ability to expand and add new business functions according to the actual requirements of CNOOC. The system adopts Eclipse as the programming language, combines JavaScript technology and Oracle database to develop the system, and designs and implements the system according to the system requirement analysis, system design, system realization and system test. According to the idea of software engineering, the system is designed by the combination of top-down and bottom-up methods. The system is divided into mud logging data acquisition and management module, data transmission management module, mud logging data receiving management module. There are four main modules in the system configuration management module, in which each module is divided into several small sub-function modules. Well data acquisition and management module is divided into acquisition equipment state management, real-time data acquisition settings, real-time data collection and view and real-time data acquisition management; data transmission management module includes transmission parameter setting, transmission state management, Manual data reissue and transmission infill setting; mud logging data receiving management module includes receiving storage management, data comprehensive query, data audit, manual correction, trend quantity analysis and accumulative quantity analysis; system configuration management module includes equipment management. User management, log management and backup management.
【学位授予单位】:东北大学
【学位级别】:硕士
【学位授予年份】:2016
【分类号】:TP311.52
【参考文献】
相关期刊论文 前10条
1 戴照明;;我国石油安全战略研究[J];科学社会主义;2013年01期
2 张抗;;美国能源独立和页岩气革命的深刻影响[J];中外能源;2012年12期
3 刘兵;柳卫江;;2011-2012年海外油田工程技术服务市场继续快速增长[J];国际石油经济;2012年09期
4 贺秦禄;李战怀;王乐晓;段升强;王惠峰;孙鉴;;磁盘存储测试技术研究[J];计算机科学;2012年06期
5 丁元明;李花芳;刘春玲;周华宇;;卫星通信高速数据传输系统设计[J];计算机工程;2012年09期
6 傅津;刘志刚;;国际油田服务公司一体化发展的经验和启示[J];国际石油经济;2012年04期
7 张磊;夏传浩;洪一;;使用纠错技术的8b/10b编码器设计[J];合肥工业大学学报(自然科学版);2012年03期
8 鲍春莉;;石油公司与油田服务公司的甲乙方关系[J];中国石油企业;2012年03期
9 董琳;;石油公司与油服公司共同发展的关联格局[J];中国石油企业;2012年03期
10 徐鲁杰;周国奇;;差分原理及其在连接器中的应用[J];机电元件;2011年05期
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