波浪和风能混合电厂为墨西哥湾海上石油平台供电的可行性

Chengcheng Gu, Hua Li, Francisco Haces-Fernandez
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引用次数: 1

摘要

海上石油和天然气平台使用天然气或燃料柴油的燃气轮机,因为它们对电力的需求很大。由于可用天然气量的减少、高碳足迹、燃料成本的增加和低效率的运行,替代能源的选择是必要和迫在眉睫的。海上油气平台大多位于深水区,周围有大量高能波浪资源,因此本项目研究了以日发电量代替年平均发电量为基础,采用波浪与风力混合发电场为海上石油设施供电的可行性。利用WaveWatch III系统的墨西哥湾地区气象数据,对混合能源农场进行了建模和验证。利用1979 - 2019年的后向波和风况数据,估算了混合能源农场的日发电量。同时,对该联合混合农场供应海上油气设施的可行性进行了评估。为满足海上油气平台的需求,减少发电变化,优化了波浪风电场的配置,逐步替代燃气轮机是可行的。通过匹配当地的波浪和风力条件,该项目能够最大限度地提高功率输出,同时在有限的海洋表面面积内最小化变化。论述了波风混合装置的优势,以及集波装置与风力机组合的理论展望。为了验证所提出的优化模型,通过Vesta V90 3MW风力涡轮机和Pelamis 750kW波浪能转换器为超过45 m深水区域的五个海上平台供电,进行了案例研究。结果表明,以较小的投资和环境影响将波浪能引入大规模商业运行和利用是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility of the Potential for Wave and Wind Energy Hybrid Farm to Supply Offshore Oil Platform in Gulf of Mexico
Offshore oil and gas platforms use gas turbine with natural gas or fuel diesel for their high demand of power. Due to the declining amount of gas available, high carbon footprint, increasing cost of fuel and inefficient operating, alternative energy options are necessary and imminent. Most offshore oil and gas platforms locate in deep water surrounded by huge amount of energetic wave resources, hence, the feasibility of supplying offshore oil facilities electricity by hybrid wave and wind energy farms based on daily energy power production instead of annual average was conducted in this project. The hybrid energy farm was modeled and validated by applying meteorological data in Gulf of Mexico area from WaveWatch III system. With the hindcast wave and wind condition data from 1979 to 2019, daily energy generation of the hybrid energy farm was estimated. Meantime, the feasibility of suppling offshore oil and gas facilities by the proposed combined hybrid farm was assessed. The project optimized the configuration of the hybrid wave and wind energy farm to satisfy offshore oil and gas platform demands and reduce the variation of power generation, so that it may be feasibility to gradually substitute the gas turbines. Through matching the local wave and wind conditions, the project was able to maximize the power output while minimize the variation within limited ocean surface area. The project addressed the advantages of hybrid wave and wind devices, as well as theoretical prospection of wave harvesting device and wind turbine combination. To validate the proposed optimization model, a case study was explored by using Vesta V90 3MW wind turbines and Pelamis 750kW wave energy converters to supply five offshore platforms in more than 45 m deep water areas. The results indicated the possibility of bringing wave energy into large commercial operation and utilization with minor investment and environmental impact.
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