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Application and development of advanced engineering geographical information systems for pipeline design

机译:先进的工程地理信息系统在管道设计中的应用与开发

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摘要

This thesis proposes the use of an Advanced Engineering Geographical Information System (AEGIS) for the improved design of onshore pipelines, from concept to operation. The system is novel in that it is function rather than discipline or software specific. The thesis statement has been developed, and an aim and set of research objectives identified (along with the success criteria for the evaluation of the system), based on a review of current pipeline design methods. Drawing on a design science research methodology (DSRM), the thesis proposes the development of the system as an artefact in order to validate the proposed constructs, models, methods and implementations. The thesis discusses the underlying issues of data interoperability, the application of open data standards, and the integration of computer aided design (CAD) and geographical information systems (GIS). These challenges are addressed in the thesis and demonstrated through the implementation of the system. To support the development of the system, research was undertaken in the fields of pipeline engineering, environmental engineering and engineering design. As part of this research, a number of peer-reviewed journal papers were published, and conference papers presented in Kampala, Houston, London and Split. These papers covered the key fields contained in the thesis including, fluid mechanics, bio-systems engineering, environmental engineering, CAD/GIS integration (CGI), and the application and development of geospatial pipeline data models. The thesis concludes that the approach is valid, offering significant improvement across all fields compared to the current method of pipeline design. By taking a functional approach to the challenges of the design of pipelines, a system has been developed that addresses the requirements of the pipeline engineer, environmental engineer and engineering designer. The system enables the user to select the software of their choice, thereby reducing the problems associated with data interoperability, retraining and system integration. The sharing of data and outputs from analysis carried out within the system, provides an integrated approach, which can subsequently be used for the integrity management of the pipeline during the operational phase of the project. The scope for further development of this approach to pipeline design is also discussed. In addition to the inclusion of further engineering and environmental analysis, there is the potential for using the system for the design of subsea pipelines.
机译:本文提出使用高级工程地理信息系统(AEGIS)改进从概念到操作的陆上管道设计。该系统是新颖的,因为它是功能而不是特定学科或软件。在对当前管道设计方法进行回顾的基础上,已经完成了论文陈述,并确定了目标和研究目标集(以及评估系统的成功标准)。本文基于设计科学研究方法论(DSRM),提出将系统作为人工制品进行开发,以验证所提出的构造,模型,方法和实现。本文讨论了数据互操作性,开放数据标准的应用以及计算机辅助设计(CAD)和地理信息系统(GIS)集成的潜在问题。这些挑战在本文中得到了解决,并通过系统的实现得到了证明。为了支持该系统的开发,在管道工程,环境工程和工程设计领域进行了研究。作为这项研究的一部分,发表了许多同行评审的期刊论文,并在坎帕拉,休斯顿,伦敦和斯普利特发表了会议论文。这些论文涵盖了论文中包含的关键领域,包括流体力学,生物系统工程,环境工程,CAD / GIS集成(CGI)以及地理空间管道数据模型的应用和开发。本文得出的结论是,该方法是有效的,与当前的管道设计方法相比,该方法在所有领域都有了显着改进。通过采用功能性方法应对管道设计的挑战,开发了一种系统,该系统可满足管道工程师,环境工程师和工程设计师的要求。该系统使用户能够选择自己选择的软件,从而减少与数据互操作性,再培训和系统集成相关的问题。系统内进行的分析数据和输出的共享提供了一种集成的方法,该方法可以随后在项目的运营阶段用于管道的完整性管理。还讨论了这种管道设计方法的进一步开发范围。除了包括进一步的工程和环境分析之外,还有可能将该系统用于海底管道的设计。

著录项

  • 作者

    Winning H.K.;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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