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Shifei Tu

Dados Biográficos

ID7993636
NOMEShifei Tu
PRENOMESShifei
SOBRENOMETu
ASSINATURATU S
AFILIAÇÕESGuangdong Ocean University
ORCID0000-0003-3720-6259
VERIFICADOSim
TOTAL DE OBRAS6
TOTAL DE CITAÇÕES0
TOTAL COMO AUTOR6
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2018
ANO MAIS RECENTE DE PUBLICAÇÃO2025
ÍNDICE H0
  • Decrease in the spatial inhomogeneity of tropical cyclone rainfall in China

    Open Access•Dong Huang, Shengyuan Liu et al.•ARTICLE•Environmental Research Letters•2025

    The increasing impact of tropical cyclone (TC) rainfall underscores the need to understand regional variations in its spatial distribution. Using high-resolution satellite precipitation data from 1998–2023, this study investigates changes in the spatial inhomogeneity of TC rainfall across China. Results show that TC rainfall inhomogeneity decreases significantly by about 65%, indicating a reduced rainfall in historically high-TC-rainfall areas an…

  • Modulation of western North Pacific tropical cyclone decadal variability by the Victoria mode

    Open Access•Tao Wen, Jianping Li et al.•ARTICLE•Environmental Research Letters•2025

    Intense tropical cyclones (TCs) in the southeastern western North Pacific (SE-WNP) significantly impact East Asian coastal nations. Decadal variability in TC genesis frequency (TCGF) has been linked to the Pacific decadal oscillation (PDO), a major sea surface temperature (SST) pattern in the North Pacific. However, based on extended observation records, we show that the decadal variability of SE-WNP TCGF is mainly driven by the Victoria mode (VM…

  • Detecting the impact of climate change on tropical cyclones in Southern China

    Open Access•Shifei Tu, Yifan Zhang et al.•ARTICLE•Environmental Research Letters•2024

    It is well known that tropical cyclones (TCs) making landfall in Southern China (SC) account for more than half of all TCs making landfall in China. Therefore, it is important to have an in-depth understanding of the activities of TCs in SC under climate warming. Our results show that there have been no significant changes in the frequency and duration of these TCs, but their intensities have unexpectedly decreased by ∼20% since 1980, which is in…

  • Effects of tropical cyclone intensity on spatial footprints of storm surges

    Open Access•Chuangwu Deng, Shifei Tu et al.•ARTICLE•Environmental Research Letters•2024

    Storm surges caused by tropical cyclones (TCs) have long ranked first among all types of marine disasters in casualties and economic losses, and can lead to further regional exacerbation of consequences stemming from these losses along different coastlines. Understanding the spatial footprints of storm surges is thus highly important for developing effective risk management and protection plans. To this end, we designed an ideal storm surge model…

  • Differences in the destructiveness of tropical cyclones over the western North Pacific between slow- and rapid-transforming El Niño years

    Open Access•Shifei Tu, Jianjun Xu et al.•ARTICLE•Environmental Research Letters•2020

    The relationship between the destructive potential of tropical cyclones (TCs) over the western North Pacific (WNP) (as quantified by the Power Dissipation Index) and El Niño events is investigated in this work. Results show that the destructive potential of TCs is significantly affected by how rapidly El Niño decays from a positive phase to a negative phase. For TCs occurring during ‘slow-transforming’ El Niño, more of them initiate over the sout…

  • Regime shift in the destructiveness of tropical cyclones over the western North Pacific

    Open Access•Shifei Tu, Feng Xu et al.•ARTICLE•Environmental Research Letters•2018

    The characteristics of tropical cyclones (TCs) and their response to climate change is an issue of broad concern. Based on the Power Dissipation Index (PDI) proposed by Emanuel in 2005, the destructiveness of TCs in the typhoon season (July–October) during the period 1979–2016 over the western North Pacific is investigated. Results show that a regime shift in the destructive potential of TCs took place around 1998. The destructive potential of TC…

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  • Regime shift in the destructiveness of tropical cyclones over the western North Pacific

    Open Access•Shifei Tu, Feng Xu et al.•ARTICLE•Environmental Research Letters•2018

    The characteristics of tropical cyclones (TCs) and their response to climate change is an issue of broad concern. Based on the Power Dissipation Index (PDI) proposed by Emanuel in 2005, the destructiveness of TCs in the typhoon season (July–October) during the period 1979–2016 over the western North Pacific is investigated. Results show that a regime shift in the destructive potential of TCs took place around 1998. The destructive potential of TC…

  • Differences in the destructiveness of tropical cyclones over the western North Pacific between slow- and rapid-transforming El Niño years

    Open Access•Shifei Tu, Jianjun Xu et al.•ARTICLE•Environmental Research Letters•2020

    The relationship between the destructive potential of tropical cyclones (TCs) over the western North Pacific (WNP) (as quantified by the Power Dissipation Index) and El Niño events is investigated in this work. Results show that the destructive potential of TCs is significantly affected by how rapidly El Niño decays from a positive phase to a negative phase. For TCs occurring during ‘slow-transforming’ El Niño, more of them initiate over the sout…

  • Detecting the impact of climate change on tropical cyclones in Southern China

    Open Access•Shifei Tu, Yifan Zhang et al.•ARTICLE•Environmental Research Letters•2024

    It is well known that tropical cyclones (TCs) making landfall in Southern China (SC) account for more than half of all TCs making landfall in China. Therefore, it is important to have an in-depth understanding of the activities of TCs in SC under climate warming. Our results show that there have been no significant changes in the frequency and duration of these TCs, but their intensities have unexpectedly decreased by ∼20% since 1980, which is in…

  • Effects of tropical cyclone intensity on spatial footprints of storm surges

    Open Access•Chuangwu Deng, Shifei Tu et al.•ARTICLE•Environmental Research Letters•2024

    Storm surges caused by tropical cyclones (TCs) have long ranked first among all types of marine disasters in casualties and economic losses, and can lead to further regional exacerbation of consequences stemming from these losses along different coastlines. Understanding the spatial footprints of storm surges is thus highly important for developing effective risk management and protection plans. To this end, we designed an ideal storm surge model…

  • Decrease in the spatial inhomogeneity of tropical cyclone rainfall in China

    Open Access•Dong Huang, Shengyuan Liu et al.•ARTICLE•Environmental Research Letters•2025

    The increasing impact of tropical cyclone (TC) rainfall underscores the need to understand regional variations in its spatial distribution. Using high-resolution satellite precipitation data from 1998–2023, this study investigates changes in the spatial inhomogeneity of TC rainfall across China. Results show that TC rainfall inhomogeneity decreases significantly by about 65%, indicating a reduced rainfall in historically high-TC-rainfall areas an…

  • Modulation of western North Pacific tropical cyclone decadal variability by the Victoria mode

    Open Access•Tao Wen, Jianping Li et al.•ARTICLE•Environmental Research Letters•2025

    Intense tropical cyclones (TCs) in the southeastern western North Pacific (SE-WNP) significantly impact East Asian coastal nations. Decadal variability in TC genesis frequency (TCGF) has been linked to the Pacific decadal oscillation (PDO), a major sea surface temperature (SST) pattern in the North Pacific. However, based on extended observation records, we show that the decadal variability of SE-WNP TCGF is mainly driven by the Victoria mode (VM…

Tropical and Extratropical Cyclones Research (6 obras) · Tropical cyclone (6 obras) · Climatology (5 obras) · Geology (5 obras) · Climate variability and models (4 obras) · Environmental Science (4 obras) · Ocean Waves and Remote Sensing (4 obras) · Oceanography (4 obras) · Geography (3 obras) · Physics (3 obras)

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