利比亚地下管道太阳能光伏阴极保护优化设计与仿真

Mustafa, A.Al-Refai
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引用次数: 1

摘要

在利比亚,管道被用作从井口向出口海港、炼油厂、储罐、钢铁厂和发电厂输送碳氢化合物的手段。钢管道因其是最安全的碳氢化合物和其他石油产品的运输方式以及其成本效益而被广泛使用。然而,油气行业面临的挑战之一是基础设施和处理装置的腐蚀。阴极保护(CP)是一种保护与大地接触的金属体免受腐蚀的电气方法。光伏(PV)为远程CP站供电提供了可靠的解决方案,可以将CP单元放置在地下管道的任何位置,从而确保最佳的电流分配,以满足确切的保护要求。本文根据天主教保护所需的功率、所用光伏组件的特点以及安装地点的气象资料,确定了系统的尺寸。利用Matlab/Simulink和PVsyst V6.43软件对光伏供电阴极保护系统部件进行优化设计、尺寸确定和仿真。此外,还对系统的成本估算进行了研究,并与常规系统进行了比较。结果表明,在光伏系统组件价格迅速下降、效率和可靠性不断提高的情况下,利用太阳能供电的地下管道阴极保护系统不仅经济实惠,而且实用性强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Design and Simulation of Solar Photovoltaic Powered Cathodic Protection for Underground Pipelines in Libya
In Libya, pipelines are being used as means of transferring hydrocarbon from wellheads to export sea ports, refineries, storage tanks, steel factory and power plants. Steel pipeline is widely used because it is the safest means of transporting hydrocarbon and other oil products as well as its cost effective. However, one of the challenges facing oil and gas sector is corrosion on infrastructure facilities and processing units. Cathodic-protection (CP) is an electrical method used to protect metallic body in contact with the earth from corrosion. A photovoltaic (PV) provides a reliable solution for powering remote CP stations, enabling the placing of CP units in any location along the underground pipeline, thus ensuring optimal current distribution for the exact protection requirements. In this paper the sizing of the system is determined based on the electrical power needed for the catholic protection, characteristics of the used PV module and the meteorological data of the installation site. Matlab/Simulink and PVsyst V6.43 software are used as tools for optimal design, sizing and simulation of the PV powered cathodic protection system components. In addition to that estimation of system cost was investigated and compared with the conventional system. The results show that using solar energy powered cathodic protection system for underground pipelines is practical and very beneficial besides being economical, especially considering the rapid decreasing in the prices of PV systems components and the increasing of its efficiencies and reliability.
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