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Piotr Przybylski_浅水和深水环境下海上能源基础设施规划的复杂性.pdf

上传人: Fl****zo 编号:718539 2025-06-22 16页 2.09MB

1、OI London,12-14 March 2024Complexities of Offshore Energy Infrastructure Planning Between Shallow Water and Deepwater EnvironmentsPiotr Przybylski,William(Bill)Berger,James Keenan,Zachary Metz,Berger Geosciences LLC.Introduction and significances Local vs.federal government regulations and its influ

2、ence on shallow and deepwater infrastructure planningCase studiesKey differences in geophysical planning of offshore energy infrastructure in shallow and deepwater environments Key differences in archaeological planning of offshore energy infrastructure in shallow and deepwater environments Conclusi

3、onsOutlineOI-London-12-14 March 2024 Complexities of Offshore Energy Infrastructure Planning Between Shallow Water and Deepwater Environments Piotr Przybylski Berger Geosciences,2024Current Offshore Oil&Gas and Wind Energy StructuresSignificances:Offshore Oil&Gas fields are concentrated in the GOM,N

4、orth Sea,and Middle East with scattered additional fields in S.E.Asia,West Africa,Mediterranean Sea,and South AmericaHighest wind energy density(reds and yellows)are concentrated predominantly in temperate and arctic climate zones of the northern and southern hemispheres.Lowest wind energy density(g

5、reens)are in tropical and subtropical locationsOI-London-12-14 March 2024 Complexities of Offshore Energy Infrastructure Planning Between Shallow Water and Deepwater Environments Piotr Przybylski Berger Geosciences,2024Gourvenec et al.,2022Predicted Density Increase of Offshore Energy StructuresSign

6、ificances:Growing energy demandBigger push on renewable energy by local governments to reduce emission of greenhouse gasesLesser space to accommodate energy structuresRemoval/upgrade of older structuresProper planning of offshore infrastructure is essentialOffshore energy structures will grow in bot

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本文主要探讨了浅水和深水环境中海上能源基础设施规划的复杂性。关键点如下: 1. 海上能源结构:油气田主要集中在墨西哥湾、北海和中东,而风能密度高的区域主要在北半球和南半球的温带及寒带气候区。 2. 规划挑战:随着能源需求的增长和地方政府推动可再生能源以减少温室气体排放,海上能源结构在浅水和深水区域均将增加。 3. 政府法规:海上基础设施规划需考虑地方政府和联邦政府的不同法规,浅水区域还需考虑渔业和休闲船艇活动。 4. 技术差异:浅水区域使用相对较小的船只和2D地震勘探,深水区域使用更大船只或自主水下航行器(AUV)以及3D地震勘探。 5. 考古规划:浅水区域考古工作深度小于305米,而深水区域需依赖AUV等技术。 6. 结论:海上能源基础设施规划在浅水和深水环境中面临不同挑战,随着深水评估需求的增加,AUV调查和专业人才的重要性日益凸显。
"浅水与深水能源基建有何不同?" "海上能源结构增长对规划有何挑战?" "卫星定位在海洋基建中扮演什么角色?"
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