首页> 外文会议>Biennial International Pipeline Conference(IPC 2004) vol.3; 20041004-08; Calgary(CA) >HARDISTY CAVERN STORAGE FACILITY: MAXIMIZING PROCESS EQUIPMENT UTILIZATION THROUGH INNOVATIVE AUTOMATION TECHNIQUES
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HARDISTY CAVERN STORAGE FACILITY: MAXIMIZING PROCESS EQUIPMENT UTILIZATION THROUGH INNOVATIVE AUTOMATION TECHNIQUES

机译:HARDISTY洞穴存储设施:通过创新的自动化技术最大程度地利用过程设备

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The Hardisty Cavern Facility at Hardisty, Alberta — consists of four underground salt caverns totalling 3.0 million barrels of petroleum products storage — was recently completed. This project is unique in that it integrates existing underground salt caverns into a significant North American crude oil transportation hub. Approximately 400 million barrels of oil move through this hub annually. This project utilizes existing caverns developed in the late 1960's with significant upgrades and new infrastructure to integrate the Hardisty Cavern Facility into the crude oil transportation hub. This paper discusses the automation related innovations implemented and the challenges encountered during the course of the project. One example of innovation involves utilizing a single variable frequency drive (VFD) to perform multiple functions. Due to process requirements, the VFD was required to operate one or two cavern injection pumps. Electrical power grid constraints dictated that the VFD be used for starting and stopping the 1500 horsepower (1119 kW) pump motors. Process conditions also required that the pump motor loads be automatically transferred from VFD to the utility power grid without interruption to production. Operational flexibility was another key component of the facility automation requirements. Storage requirements for multiple petroleum products necessitated operator-selectable flow paths within the automation system. In addition, flexibility, safety, efficiency and maintainability requirements resulted in a distributed process philosophy across three separate process areas.
机译:位于亚伯达省哈迪斯的哈迪斯洞穴设施由四个地下盐洞组成,总共存储了300万桶石油产品,该设施最近完工。该项目的独特之处在于将现有的地下盐穴整合到重要的北美原油运输枢纽中。每年大约有4亿桶石油通过该枢纽。该项目利用了1960年代后期开发的现有洞穴,并进行了重大升级和新的基础设施,以将Hardisty洞穴设施整合到原油运输枢纽中。本文讨论了与自动化相关的创新,以及在项目过程中遇到的挑战。创新的一个示例涉及利用单个变频驱动器(VFD)执行多种功能。由于工艺要求,要求VFD运行一台或两台穴位注射泵。电网限制要求VFD可用于启动和停止1500马力(1119 kW)泵电动机。过程条件还要求泵电动机负载自动从VFD转移到公用电网,而不会中断生产。操作灵活性是设施自动化要求的另一个关键组成部分。多种石油产品的存储要求在自动化系统内需要操作员选择的流路。此外,对灵活性,安全性,效率和可维护性的要求导致了在三个独立过程区域中的分布式过程哲学。

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