Details of the Researcher

PHOTO

Wu Baolan
Section
Advanced Institute for Marine Ecosystem Change
Job title
Associate Professor
e-Rad No.
01015264

Research History 3

  • 2024/10 - Present
    Tohoku University Advanced Institute for Marine Ecosystem Change Professor (Associate)

  • 2025/01 - 2025/06
    University of California San Diego Scripps Institution of Oceanography (SIO) Visiting Scholar

  • 2021/06 - 2024/09
    Hong Kong University of Science and Technology Department of Mathematics PostDoc Position

Education 3

  • Ocean University of China College of Oceanic and Atmospheric Sciences Physical Oceanography

    2015/09 - 2021/06

  • Woods Hole Oceanographic Institution Physical Oceanography Physical Oceanography

    2018/10 - 2020/12

  • Ocean University of China College of Oceanic and Atmospheric Sciences Marine Science

    2011/09 - 2015/06

Professional Memberships 7

  • Peer Reviewer for Frontiers in Marine Science

    - Present

  • Peer Reviewer for Ocean Modelling

    - Present

  • Peer Reviewer for Acta Oceanologica Sinica

    - Present

  • Peer Reviewer for Progress in Oceanography

    - Present

  • Peer Reviewer for Journal of Oceanography

    - Present

  • Peer Reviewer for Journal of Geophysical Research-Oceans

    - Present

  • Peer Reviewer for Geophysical Research Letters

    - Present

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Research Interests 1

  • Mode water; Oceanic Fronts; Decadal to Multidecadal Variability; Re-emergence Memory

Research Areas 1

  • Natural sciences / Atmospheric and hydrospheric science / Physical Oceanography

Awards 3

  1. National Scholarship for Doctoral Students (China)

    2020 Ministry of Education of the People’s Republic of China

  2. President Scholarship

    2019 Ocean University of China

  3. National Scholarship for Doctoral Students (China)

    2018 Ministry of Education of the People’s Republic of China

Papers 13

  1. North Pacific subtropical mode water is controlled by the Atlantic Multidecadal Variability Peer-reviewed

    Baolan Wu, Xiaopei Lin, Lisan Yu

    Nature Climate Change 10 (3) 238-243 2020/03/17

    Publisher: Springer Science and Business Media {LLC}

    DOI: 10.1038/s41558-020-0692-5  

  2. Enhanced Wintertime Current Along the South China Sea Continental Slope Over the Past Three Decades

    Baolan Wu, Jianping Gan

    Journal of Geophysical Research: Oceans 2026/02

    DOI: 10.1029/2024JC021977  

  3. Re-emergence memory of subtropical mode-water links Atlantic and Pacific multidecadal variability Peer-reviewed

    Baolan Wu, Xiaopei Lin, Lisan Yu

    National Science Review 12 2025/02

    DOI: 10.1093/nsr/nwaf047  

  4. Long-term Variation of the Eddy Kinetic Energy in the Northwestern South China Sea Peer-reviewed

    Baolan Wu, Jianping Gan

    Progress in Oceanography 229 2024/10

    DOI: 10.1016/j.pocean.2024.103366  

  5. Long‐Term Decreasing of Sea Level Along Latitude of the Luzon Strait During 1993–2020: Surface Versus Subsurface Perspectives Peer-reviewed

    Baolan Wu, Jianping Gan, Xiaopei Lin, Bo Qiu

    Journal of Geophysical Research: Oceans 2024/02

    DOI: 10.1029/2023JC019805  

  6. Zonally Asymmetric Multidecadal Variability of the North Pacific Subtropical Fronts Peer-reviewed

    Baolan Wu, Lixiao Xu

    Journal of Climate 2023/05/01

    DOI: 10.1175/jcli-d-22-0299.1  

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    <jats:title>Abstract</jats:title> <jats:p>The North Pacific Subtropical Fronts (STFs), accompanied by the eastward-flowing subtropical countercurrent, stretch from the western Pacific Ocean to the north of Hawaii. Previous work has detected different trends of the frontal position and strength between the western STF (WSTF; west of 180°) and the eastern STF (ESTF; east of 180°) in the past 40 years. However, whether the basin-scale STFs have zonally asymmetric variability on multidecadal time scales and what drives that change remain to be quantified. Our recent work has shown that the multidecadal variability of the WSTF is controlled by the Atlantic multidecadal oscillation via the subtropical mode water variability. The present study proposes that the variability of ESTF is modulated by the Pacific decadal oscillation (PDO) via the central mode water (CMW) variability, quasi synchronously on multidecadal time scales. During a PDO positive phase, the enhanced midlatitude westerly winds in the central North Pacific increase the local surface buoyancy loss and deepen the winter mixed layer, which enlarges the CMW formation and thus increases its volume. Meanwhile, accompanied by the southward-migrated outcropping zone, the main body of CMW shifts equatorward. In response to such CMW changes, the ESTF strengthens and shifts equatorward correspondingly. Conversely, during a PDO negative phase, the weakened midlatitude westerly winds in the central North Pacific decrease the local surface buoyancy loss and shallow the winter mixed layer, which reduces the CMW formation and thus decreases its volume. Meanwhile, accompanied by northward-migrated outcropping zone, the main body of CMW shifts poleward. In response to such CMW changes, the ESTF weakens and shifts poleward correspondingly. Our results reveal that the dominant factor controlling the low-frequency variability of the WSTF and ESTF is different, which renews the conventional picture that all of the STFs behave symmetrically, with important implications for the North Pacific climate variability.</jats:p>

  7. Seasonal Modulation of the Eddy Kinetic Energy and Subtropical Countercurrent Near the Western North Pacific Boundary Peer-reviewed

    Baolan Wu, Jianping Gan

    Journal of Geophysical Research: Oceans 2023/01

    DOI: 10.1029/2022JC019160  

  8. Weakening and Poleward Shifting of the North Pacific Subtropical Fronts from 1980 to 2018 Peer-reviewed

    Lixiao Xu, Keyao Wang, Baolan Wu

    Journal of Physical Oceanography 2022/03/07

    DOI: 10.1175/jpo-d-21-0170.1  

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    <jats:title>Abstract</jats:title> <jats:p>Recent evidence shows that the North Pacific subtropical gyre and the Kuroshio Extension (KE) and Oyashio Extension (OE) fronts have moved poleward in the past few decades. However, changes of the North Pacific Subtropical Fronts (STFs), anchored by the North Pacific subtropical countercurrent in the southern subtropical gyre, remain to be quantified. By synthesizing observations, reanalysis, and eddy-resolving ocean hindcasts, we show that the STFs, especially their eastern part, weakened (20% ± 5%) and moved poleward (1.6° ± 0.4°) from 1980 to 2018. Changes of the STFs are modified by mode waters to the north. We find that the central mode water (CMW) (180°–160°W) shows most significant weakening (18% ± 7%) and poleward shifting (2.4° ± 0.9°) trends, while the eastern part of the subtropical mode water (STMW) (160°E–180°) has similar but moderate changes (10% ± 8%; 0.9° ± 0.4°). Trends of the western part of the STMW (140°–160°E) are not evident. The weakening and poleward shifting of mode waters and STFs are enhanced to the east and are mainly associated with changes of the northern deep mixed layers and outcrop lines—which have a growing northward shift as they elongate to the east. The eastern deep mixed layer shows the largest shallowing trend, where the subduction rate also decreases the most. The mixed layer and outcrop line changes are strongly coupled with the northward migration of the North Pacific subtropical gyre and the KE/OE jets as a result of the poleward expanded Hadley cell, indicating that the KE/OE fronts, mode waters, and STFs change as a whole system.</jats:p>

  9. Decadal to Multidecadal Variability of the Western North Pacific Subtropical Front and Countercurrent Peer-reviewed

    Baolan Wu, Lixiao Xu, Xiaopei Lin

    Journal of Geophysical Research: Oceans 2022/01/19

    DOI: 10.1029/2021jc018059  

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    <jats:title>Abstract</jats:title><jats:p>The western North Pacific Subtropical Countercurrent (WSTCC), anchored by the western subtropical front (WSTF), varies from seasonal to multidecadal time scales and affects the climate variability in the North Pacific. However, conflicting views exist for physical mechanisms of the decadal to multidecadal variability of the WSTF/WSTCC. While many previous studies attribute the WSTF/WSTCC decadal variability to the anomalous wind forcing by the Pacific Decadal Oscillation, by synthesizing observations, reanalysis products and the pre‐industrial model simulation experiment, the present study demonstrates that they are controlled by the Atlantic Multidecadal Oscillation (AMO) through the Subtropical Mode Water (STMW) variability. The AMO induced decadal temperature and volume anomalies of the STMW are stored in the subsurface ocean through the subduction process south of the Kuroshio Extension. Then these anomalies propagate southwestward along the thermocline circulation and reaches the northern flank of the WSTCC in about 5 years. During the AMO‐positive phase, the anomalous warm and thin STMW flattens the upper thermocline, reduces the meridional temperature gradient and weakens the WSTF intensity, lagging 5 years behind the AMO index. Subsequently, the WSTCC decreases and moves southward, and vice versa for the AMO‐negative phase. Our results provide a potential predictability for the WSTF and WSTCC decadal to multidecadal variability and are important for the North Pacific climate change and the biogeochemical processes.</jats:p>

  10. Poleward Shift of the Kuroshio Extension Front and Its Impact on the North Pacific Subtropical Mode Water in the Recent Decades Peer-reviewed

    Baolan Wu, Xiaopei Lin, Lisan Yu

    Journal of Physical Oceanography 2021/02/01

    DOI: 10.1175/jpo-d-20-0088.1  

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    <jats:title>Abstract</jats:title><jats:p>The meridional shift of the Kuroshio Extension (KE) front and changes in the formation of the North Pacific Subtropical Mode Water (STMW) during 1979–2018 are reported. The surface-to-subsurface structure of the KE front averaged over 142°–165°E has shifted poleward at a rate of ~0.23° ± 0.16° decade<jats:sup>−1</jats:sup>. The shift was caused mainly by the poleward shift of the downstream KE front (153°–165°E, ~0.41° ± 0.29° decade<jats:sup>−1</jats:sup>) and barely by the upstream KE front (142°–153°E). The long-term shift trend of the KE front showed two distinct behaviors before and after 2002. Before 2002, the surface KE front moved northward with a faster rate than the subsurface. After 2002, the surface KE front showed no obvious trend, but the subsurface KE front continued to move northward. The ventilation zone of the STMW, defined by the area between the 16° and 18°C isotherms or between the 25 and 25.5 kg m<jats:sup>−3</jats:sup> isopycnals, contracted and displaced northward with a shoaling of the mixed layer depth <jats:italic>h</jats:italic><jats:sub><jats:italic>m</jats:italic></jats:sub> before 2002 when the KE front moved northward. The STMW subduction rate was reduced by 0.76 Sv (63%; 1 Sv ≡ = 10<jats:sup>6</jats:sup> m<jats:sup>3</jats:sup> s<jats:sup>−1</jats:sup>) during 1979–2018, most of which occurred before 2002. Of the three components affecting the total subduction rate, the temporal induction (−∂<jats:italic>h</jats:italic><jats:sub><jats:italic>m</jats:italic></jats:sub>/∂<jats:italic>t</jats:italic>) was dominant accounting for 91% of the rate reduction, while the vertical pumping (−<jats:italic>w</jats:italic><jats:sub>mb</jats:sub>) amounted to 8% and the lateral induction (−<jats:bold>u</jats:bold><jats:sub>mb</jats:sub> ⋅ ∇<jats:italic>h</jats:italic><jats:sub><jats:italic>m</jats:italic></jats:sub>) was insignificant. The reduced temporal induction was attributed to both the contracted ventilation zone and the shallowed <jats:italic>h</jats:italic><jats:sub><jats:italic>m</jats:italic></jats:sub> that were incurred by the poleward shift of KE front.</jats:p>

  11. Decadal to Multidecadal Variability of the Mixed Layer to the South of the Kuroshio Extension Region Peer-reviewed

    Baolan Wu, Xiaopei Lin, Lisan Yu

    Journal of Climate 2020/09/01

    DOI: 10.1175/jcli-d-20-0115.1  

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    <jats:title>Abstract</jats:title><jats:p>The decadal to multidecadal mixed layer variability is investigated in a region south of the Kuroshio Extension (130°E–180°, 25°–35°N), an area where the North Pacific subtropical mode water forms, during 1948–2012. By analyzing the mixed layer heat budget with different observational and reanalysis data, here we show that the decadal to multidecadal variability of the mixed layer temperature and mixed layer depth is covaried with the Atlantic multidecadal oscillation (AMO), instead of the Pacific decadal oscillation (PDO). The mixed layer temperature has strong decadal to multidecadal variability, being warm before 1970 and after 1990 (AMO positive phase) and cold during 1970–90 (AMO negative phase), and so does the mixed layer depth. The dominant process for the mixed layer temperature decadal to multidecadal variability is the Ekman advection, which is controlled by the zonal wind changes related to the AMO. The net heat flux into the ocean surface <jats:italic>Q</jats:italic><jats:sub>net</jats:sub> acts as a damping term and it is mainly from the effect of latent heat flux and partially from sensible heat flux. While the wind as well as mixed layer temperature decadal changes related to the PDO are weak in the western Pacific Ocean. Our finding proposes the possible influence of the AMO on the northwestern Pacific Ocean mixed layer variability, and could be a potential predictor for the decadal to multidecadal climate variability in the western Pacific Ocean.</jats:p>

  12. On the seasonal variability of the Oyashio extension fronts Peer-reviewed

    Baolan Wu, Xiaopei Lin, Bo Qiu

    Climate Dynamics 2019/09/04

    DOI: 10.1007/s00382-019-04972-1  

  13. Meridional Shift of the Oyashio Extension Front in the Past 36 Years Peer-reviewed

    Baolan Wu, Xiaopei Lin, Bo Qiu

    Geophysical Research Letters 45 (17) 9042-9048 2018/09/16

    Publisher: American Geophysical Union ({AGU})

    DOI: 10.1029/2018GL078433  

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Presentations 21

  1. Enhanced Wintertime Current along the South China Sea Continental Slope over the Past Three Decades

    Baolan Wu

    The Sixth Session of the CSK-2 International Steering Group Programme 2025/11/28

  2. Enhanced Wintertime Current along the South China Sea Continental Slope over the Past Three Decades

    Baolan Wu

    AIMEC/OIST Joint workshop 2025/11/21

  3. The Ocean Memory in the Pacific modulated by the Atlantic forcing on Decadal timescale Invited

    Baolan Wu

    2024 International Conference on the Cooperation and Integration of Industry, Education, Research and Application 2024/11/22

  4. Increasing of current along the South China Sea continental slope during winter in the past 30 years

    Baolan Wu

    Second International Scientific Symposium of CSK-2 2024/11/13

  5. Oceanic Reemergence Memory Links the Atlantic and Pacific Multidecadal Variability Invited

    Baolan Wu

    Japan Geoscience Union Meeting 2024 2024/05/26

  6. Long-term Variation of the Eddy Kinetic Energy in the Northeastern South China Sea modulated by the enhanced Kuroshio Looping Pathway

    Baolan Wu

    2nd UN Ocean Decade Regional Conference & 11th WESTPAC International Marine Science Conference 2024/04/22

  7. Decadal variation and its environmental effects in the Western North Pacific Ocean Invited

    Baolan Wu

    The Fourth Session of the CSK-2 International Steering Group 2023/12/04

  8. Participation and Prospects in the ECOP Programme of the UN Ocean Decade Invited

    Baolan Wu

    International Digital Twins of the Ocean Summit 2023 2023/11/12

  9. Long-term Decreasing of Sea Level along Latitude of the Luzon Strait and its impact on the South China Sea: Surface VS Subsurface Forcing

    Baolan Wu

    The South China Sea Annual Meeting 2023 2023/11/03

  10. Decadal variation and its environmental effects in the Western North Pacific Ocean Invited

    Baolan Wu

    2023 East Asia Marine Cooperation Platform Qingdao Forum 2023/06/27

  11. North Pacific Subtropical Mode Water Controlled by the Atlantic Multi-Decadal Variability

    Baolan Wu

    General Assembly 2020 of the European Geosciences Union 2020/05/06

  12. North Pacific Subtropical Mode Water Controlled by the Atlantic Multi-Decadal Variability

    Baolan Wu

    AMS 100th Annual Meeting 2020/01/16

  13. The Impact of Atlantic Multi-Decadal Oscillation on the North Pacific Subtropical Mode Water

    Baolan Wu

    AGU Fall Meeting 2019 2019/12

  14. The Impact of Atlantic Multi-Decadal Oscillation on the North Pacific Subtropical Mode Water

    Baolan Wu

    PICES-2019 Annual Meeting 2019/10

  15. The Impact of Atlantic Multi-Decadal Oscillation on the Kuroshio Extension and Subtropical Mode Water

    Baolan Wu

    27th IUGG General Assembly 2019 2019/07

  16. Meridional Shift of the Kuroshio-Oyashio Front in the Past 35 years

    Baolan Wu

    2018 Ocean Sciences Meeting 2018/02

  17. Meridional Shift of the SST Front in the Kuroshio and Gulf Stream Extensions in the Past three decades

    Baolan Wu

    International Workshop on Tropical-subtropical Weather, Climate and Oceans 2017/11

  18. Meridional Shift of the SST Front in the Kuroshio and Gulf Stream Extensions in the Past Three Decades

    Baolan Wu

    2017 Ocean Carbon Hot Spots Workshop 2017/09

  19. Surface Density Decadal Change Controlled by Salinity in the North Pacific Ocean in the Past 34 Years

    Baolan Wu

    AOGS 14th Annual Meeting 2017 2017/08

  20. Meridional shift of Subtropical sea surface temperature Front in the past 35 years from 1982 to 2016

    Baolan Wu

    2017 CLIVAR international Symposium on Boundary Currents 2017/06

  21. Meridional Shift of the Gulf Stream Front in the Past 34 Years

    Baolan Wu

    JpGU-AGU Joint Meeting 2017 2017/05

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Research Projects 3

  1. Research Enhancement for Marine Ecosystem Change and Kuroshio Variability Studies

    Baolan Wu

    Offer Organization: DEI Promotion Center, Tohoku University

    System: FY2025 Next Step Research Grant (2nd Round, TUMUG Support Program)

    Category: Marine Science

    Institution: Advanced Institute for Marine Ecosystem Change (AIMEC), Tohoku University

    2025/10 - 2026/03

  2. Interdecadal variation and regulation mechanism of the North Pacific Subtropical Countercurrent

    Baolan Wu

    Offer Organization: National Natural Science Foundation of China

    System: NSFC Young Scientists Fund

    Category: Physical Oceanography (D0601)

    Institution: The Hong Kong University of Science and Technology

    2023/01 - 2025/12

  3. Influence of interdecadal variation of Subtropical Modal Water on the South China Sea circulation

    Baolan Wu

    Offer Organization: China Postdoctoral Science Foundation

    System: China Postdoctoral Science Foundation – Special Support Program (BX2021086)

    Category: Marine Science

    Institution: The Hong Kong University of Science and Technology

    2021/06 - 2024/09

Teaching Experience 1

  1. Advanced Physical Oceanography Graduate School of Science, Tohoku University

Media Coverage 1

  1. The Ocean Has a Memory: An Oceanographer’s Path to Exploring How the Atlantic Influences the Pacific

    https://wpi-aimec.jp/en/contents/2594/

    2025/08

    Type: Internet

Academic Activities 2

  1. Northeast South China Sea – Luzon Strait Science Cruise (34 days)

    2022/09 - 2022/10

    Activity type: Academic research

  2. Western Pacific Science Cruise (54 days)

    2016/11 - 2017/01

    Activity type: Academic research