Improving satellite monitoring of coastal inundations of pelagic Sargassum algae with wind and citizen science data

被引:11
|
作者
Putman, Nathan F. [1 ]
Beyea, R. Taylor [1 ]
Iporac, Lowell Andrew R. [2 ]
Trinanes, Joaquin [3 ,4 ,5 ]
Ackerman, Emilie G. [1 ]
Olascoaga, Maria J. [6 ]
Appendini, Christian M. [7 ]
Arriaga, Jaime [8 ]
Collado-Vides, Ligia [2 ]
Lumpkin, Rick [3 ]
Hu, Chuanmin [9 ]
Goni, Gustavo [3 ]
机构
[1] LGL Ecol Res Associates, Bryan, TX 77802 USA
[2] Florida Int Univ, Inst Environm, Dept Biol Sci, Miami, FL 33199 USA
[3] NOAA, Atlantic Oceanog & Meteorol Lab, Miami, FL 33149 USA
[4] Univ Santiago De Compostela, Dept Elect & Comp Sci, Santiago 15782, Spain
[5] Univ Miami, Rosenstiel Sch Marine & Atmospher Sci, Cooperat Inst Marine & Atmospher Studies, Miami, FL 33149 USA
[6] Univ Miami, Rosenstiel Sch Marine Atmospher & Earth Sci, Dept Ocean Sci, Miami, FL 33149 USA
[7] Univ Nacl Autonoma Mexico, Lab Ingn & Proc Costeros, Inst Ingn, Sisal, Mexico
[8] Delft Univ Technol, Fac Civil Engn & Geosci, NL-2628 CN Delft, Netherlands
[9] Univ S Florida, Coll Marine Sci, St Petersburg, FL 33701 USA
基金
美国国家科学基金会;
关键词
Caribbean Sea; Gulf of Mexico; Intra-American Sea; Sargassum Inundation Report; Windage; ATLANTIC;
D O I
10.1016/j.aquabot.2023.103672
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Massive blooms of pelagic Sargassum algae have caused serious problems to coastal communities and ecosystems throughout the tropical Atlantic, Caribbean Sea, and Gulf of Mexico since 2011. Efforts to monitor and predict these occurrences are challenging owing to the vast area impacted and the complexities associated with the proliferation and movement of Sargassum. Sargassum Inundation Reports (SIRs) were first produced in 2019 to estimate the potential risk to coastlines throughout the Intra-American Sea at weekly intervals at 10 km reso-lution. SIRs use satellite-based data products to estimate beaching risk from the amount of offshore Sargassum (quantified by a Floating Algal density index). Here we examine whether including wind metrics improves the correspondence between the offshore Floating Algal density index and observations of Sargassum along the coastline. For coastal observations, we quantified the percent coverage of Sargassum in photos obtained from the citizen science project "Sargassum Watch" that collects time-stamped, georeferenced photos at beaches throughout the region. Region-wide analyses indicate that including shoreward wind velocity with SIR risk indices greatly improves the correspondence with coastal observations of Sargassum beaching compared to SIR risk indices alone. Site-specific analyses of photos from southeast Florida, USA, and data from a continuous video monitoring study at Puerto Morelos, Mexico, suggest potential uncertainties in the suite of factors controlling Sargassum beaching. Nonetheless, the inclusion of wind velocity in the SIR algorithm appears to be a promising avenue for improving regional risk indices.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Evaluating the Fitness for Use of Citizen Science Data for Wildlife Monitoring
    Fischer, Heather A.
    Gerber, Leah R.
    Wentz, Elizabeth A.
    FRONTIERS IN ECOLOGY AND EVOLUTION, 2021, 9
  • [22] Tracing the trajectory of pelagic Sargassum using satellite monitoring and Lagrangian transport simulations in the East China Sea and Yellow Sea
    Kwon, Kyungman
    Choi, Byoung-Ju
    Kim, Kwang Young
    Kim, Keunyong
    ALGAE, 2019, 34 (04) : 315 - 326
  • [23] A Google Earth Engine Platform to Integrate Multi-Satellite and Citizen Science Data for the Monitoring of River Ice Dynamics
    Abdelkader, Mohamed
    Mendez, Jorge Humberto Bravo
    Temimi, Marouane
    Brown, Dana R. N.
    Spellman, Katie V.
    Arp, Christopher D.
    Bondurant, Allen
    Kohl, Holli
    REMOTE SENSING, 2024, 16 (08)
  • [24] Pelagic citizen science data reveal declines of seabirds off south-eastern Australia
    Gorta, Simon B. Z.
    Smith, James A.
    Everett, Jason D.
    Kingsford, Richard T.
    Cornwell, William K.
    Suthers, Iain M.
    Epstein, Hal
    McGovern, Roger
    McLachlan, Greg
    Roderick, Mick
    Smith, Lindsay
    Williams, Dan
    Callaghan, Corey T.
    BIOLOGICAL CONSERVATION, 2019, 235 : 226 - 235
  • [25] Applying Satellite Data Assimilation to Wind Simulation of Coastal Wind Farms in Guangdong, China
    Xu, Wenqing
    Ning, Like
    Luo, Yong
    REMOTE SENSING, 2020, 12 (06)
  • [26] Improving big citizen science data: Moving beyond haphazard sampling
    Callaghan, Corey T.
    Rowley, Jodi J. L.
    Cornwell, William K.
    Poore, Alistair G. B.
    Major, Richard E.
    PLOS BIOLOGY, 2019, 17 (06)
  • [27] EchidnaCSI - Improving monitoring of a cryptic species at continental scale using Citizen Science
    Stenhouse, Alan
    Perry, Tahlia
    Grutzner, Frank
    Lewis, Megan
    Koh, Lian Pin
    GLOBAL ECOLOGY AND CONSERVATION, 2021, 28
  • [28] Publisher Correction: Monitoring coastal water quality with satellite data
    Ileana Callejas
    Nature Reviews Earth & Environment, 2023, 4 : 352 - 352
  • [29] Citizen surveillance for environmental monitoring: combining the efforts of citizen science and crowdsourcing in a quantitative data framework
    Welvaert, Marijke
    Caley, Peter
    SPRINGERPLUS, 2016, 5
  • [30] Citizen science provides added value in the monitoring for coastal non-indigenous species
    Lehtiniemi, Maiju
    Outinen, Okko
    Puntila-Dodd, Riikka
    JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2020, 267 (267)