Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes
To scientifically analyze the effect of offshore wind farm on intertidal beach stability, this paper summarized the research progress of intertidal zone dynamic change analysis at home and abroad. The method of hypothetical sandbank surface discrimination (HSSD) was proposed. The topographic changes...
| Published in: | Haiyang Kaifa yu guanli |
|---|---|
| Main Authors: | , , , |
| Format: | Article |
| Language: | Chinese |
| Published: |
Editorial Office of Ocean Development and Management
2023-06-01
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| Subjects: | |
| Online Access: | http://www.haiyangkaifayuguanli.com/hykfyglen/ch/reader/view_abstract.aspx?file_no=20230613&flag=1 |
| _version_ | 1852821714904285184 |
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| author | Lin LYU Dong ZHANG Yanyan CHEN Feng ZHANG |
| author_facet | Lin LYU Dong ZHANG Yanyan CHEN Feng ZHANG |
| author_sort | Lin LYU |
| collection | DOAJ |
| container_title | Haiyang Kaifa yu guanli |
| description | To scientifically analyze the effect of offshore wind farm on intertidal beach stability, this paper summarized the research progress of intertidal zone dynamic change analysis at home and abroad. The method of hypothetical sandbank surface discrimination (HSSD) was proposed. The topographic changes that caused by offshore wind turbine construction in intertidal zone were estimated quantitatively from single phase DEM, the contribution rate and contribution mode of the erosion and deposition change of offshore sand body terrain offshore caused by wind turbine construction and operation were analyzed. The multi temporal intertidal zone DEM was based on enhanced waterline method (EWM). It carried out the quantitative assessment of the safety and stability of offshore wind turbines due to the change of intertidal tidal flat erosion and deposition. The practical application proved that the scheme could be used for the influence of offshore wind turbines on intertidal zone topographic changes with quantitative remote sensing monitoring. |
| format | Article |
| id | doaj-art-082bb3e634e545e08a77decd4fbf54b6 |
| institution | Directory of Open Access Journals |
| issn | 1005-9857 |
| language | zho |
| publishDate | 2023-06-01 |
| publisher | Editorial Office of Ocean Development and Management |
| record_format | Article |
| spelling | doaj-art-082bb3e634e545e08a77decd4fbf54b62025-08-19T20:31:58ZzhoEditorial Office of Ocean Development and ManagementHaiyang Kaifa yu guanli1005-98572023-06-014061111161005-9857(2023)06-0111-06Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain ChangesLin LYU0Dong ZHANG1Yanyan CHEN2Feng ZHANG3Sea Area Use Dynamic Surveillant and Monitoring Center of Jiangsu Province, Nanjing 210017, ChinaDepartment of Marine Science and Engineering, Nanjing Normal University, Nanjing 210023, ChinaSea Area Use Dynamic Surveillant and Monitoring Center of Jiangsu Province, Nanjing 210017, ChinaSea Area Use Dynamic Surveillant and Monitoring Center of Jiangsu Province, Nanjing 210017, ChinaTo scientifically analyze the effect of offshore wind farm on intertidal beach stability, this paper summarized the research progress of intertidal zone dynamic change analysis at home and abroad. The method of hypothetical sandbank surface discrimination (HSSD) was proposed. The topographic changes that caused by offshore wind turbine construction in intertidal zone were estimated quantitatively from single phase DEM, the contribution rate and contribution mode of the erosion and deposition change of offshore sand body terrain offshore caused by wind turbine construction and operation were analyzed. The multi temporal intertidal zone DEM was based on enhanced waterline method (EWM). It carried out the quantitative assessment of the safety and stability of offshore wind turbines due to the change of intertidal tidal flat erosion and deposition. The practical application proved that the scheme could be used for the influence of offshore wind turbines on intertidal zone topographic changes with quantitative remote sensing monitoring.http://www.haiyangkaifayuguanli.com/hykfyglen/ch/reader/view_abstract.aspx?file_no=20230613&flag=1offshore wind turbineintertidal zonequantitative remote sensingerosion and accretion |
| spellingShingle | Lin LYU Dong ZHANG Yanyan CHEN Feng ZHANG Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes offshore wind turbine intertidal zone quantitative remote sensing erosion and accretion |
| title | Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes |
| title_full | Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes |
| title_fullStr | Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes |
| title_full_unstemmed | Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes |
| title_short | Quantitative Remote Sensing Monitoring of the Influence for Offshore Wind Turbines Research on Intertidal Terrain Changes |
| title_sort | quantitative remote sensing monitoring of the influence for offshore wind turbines research on intertidal terrain changes |
| topic | offshore wind turbine intertidal zone quantitative remote sensing erosion and accretion |
| url | http://www.haiyangkaifayuguanli.com/hykfyglen/ch/reader/view_abstract.aspx?file_no=20230613&flag=1 |
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