首页> 外文会议>Proceedings of the ASME India oil and gas pipeline conference 2013 >CRUDE OIL NETWORK MODELING, SIMULATION OPTIMIZATION - NOVEL APPROACH AND OPERATIONAL BENEFITS
【24h】

CRUDE OIL NETWORK MODELING, SIMULATION OPTIMIZATION - NOVEL APPROACH AND OPERATIONAL BENEFITS

机译:原油网络建模,仿真和优化-新方法和操作优势

获取原文
获取原文并翻译 | 示例

摘要

This technical paper presents the approach adopted by Kuwait Oil Company to establish an integrated Crude Oil Export Pipeline simulation model in South & East Kuwait area to achieve increase in overall asset-wide production and to improve future Pipeline & Facilities Design. The simulation used As-Built pipeline data along with field data to achieve the objectives of the study. The study had the following objectives: 1. Identify additional capacity/ deficiency within the system. 2. Perform Hydraulic Calculations (Pressure losses, Temperature Changes & Estimation of Pumping requirements from Gathering Centers). 3. Determination of operating constraints/bottlenecks due to non-availability of any critical pipe segments. 4. Optimization of Network. Accuracy of the pipeline model was verified by comparing simulation results of the existing pipelines & Manifolds with the operating data to confirm that model results duplicated field measurements. The model developed in this study has the characteristics and the ability to predict the flows and pressures under wide range of conditions - including various operational modes and constraints. The model accurately predicted the capacities and also raised few flags which were solved within short time and subsequently the network was optimized. Hydraulics study revealed that no additional capacity or looping were required. Model was studied for reliability of supply under wide range of conditions subject to potential bottlenecks and constraints which were identified in the study.
机译:本技术文件介绍了科威特石油公司在科威特南部和东部地区建立集成的原油出口管道仿真模型所采用的方法,以实现整个资产范围内的整体产量的增加并改善未来的管道和设施设计。该模拟使用竣工管道数据以及现场数据来达到研究目的。该研究具有以下目标:1.确定系统内的其他容量/不足。 2.进行水力计算(压力损失,温度变化和来自会聚中心的抽水需求估算)。 3.确定由于任何关键管段不可用而导致的操作限制/瓶颈。 4.优化网络。通过将现有管道和歧管的仿真结果与运行数据进行比较,验证了管道模型的准确性,以确认模型结果重复了现场测量结果。本研究开发的模型具有在各种条件(包括各种操作模式和约束)下预测流量和压力的特性和能力。该模型准确地预测了容量,并提出了一些在短时间内解决的标志,随后对网络进行了优化。水力学研究表明,不需要额外的容量或循环。对模型进行了研究,确定了在各种条件下的供应可靠性,这些条件受到研究中确定的潜在瓶颈和约束条件的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号