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179 results for “niños”

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zenodo36/100

El Niño Enhances Exposure to Humid Heat Extremes with Regionally Varying Impacts during Eastern vs Central Pacific Events

<p><span>Humid heat extremes, characterized by high wet bulb temperature (Tw), pose significant health risks. While strong El Ni&ntilde;o events are known to affect the frequency of extreme Tw days, the distinct impacts of Central Pacific (CP) and Eastern Pacific (EP) El Ni&ntilde;o events remain understudied. Using a 12-member CMIP6 ensemble at discrete global warming targets (+1.5˚C, 2˚C, 3˚C, 4˚C), this study shows progressively enhanced humid heat exposure during EP events primarily in Mainland Southeast Asia, while South Asia experiences regionally opposing effects from EP and CP events. EP and CP events expose distinct, regionally varying areas to dangerous Tw, yet both significantly amplify population and area exposure to humid heat extremes at all global warming levels. This amplification surpasses the impact of an additional degree of global warming, highlighting El Ni&ntilde;o&rsquo;s compounding effect on heat stress threats across warmer climates.</span> &nbsp;&nbsp;<br><a name="_msocom_1"></a></p>

opencc-by-4.0May 2024View details →
zenodo36/100

Data for "Strong linkage of El Niño-Southern Oscillation to the polar cold air mass in the Northern Hemisphere"

<p>This repository archives codes for analysis and plot presented in Abdillah et al. (2018):&nbsp;&quot;Strong linkage of El Ni&ntilde;o-Southern Oscillation to the polar cold air mass in the Northern Hemisphere&quot;. The codes are written in GrADS, Octave, and NCL format.&nbsp;</p> <p>The repository also includes&nbsp;a Fortran package for isentropic polar cold air mass diagnosis as in Iwasaki et al. (2014). The package was specifically created by Dr. Y. Kanno.</p> <p>Reference:</p> <p>Abdillah, M. R., Kanno, Y., Iwasaki, T. (2018).&nbsp;Strong linkage of El Ni&ntilde;o‐Southern Oscillation to the polar cold air mass in the Northern Hemisphere. <em>Geophysical Research Letters, in press.&nbsp;</em>https://doi.org/10.1029/2018GL077612</p> <p>Iwasaki, T., Shoji, T., Kanno, Y., Sawada, M., Ujiie, M., &amp; Takaya, K. (2014). Isentropic Analysis of Polar Cold Airmass Streams in the Northern Hemispheric Winter. <em>Journal of the Atmospheric Sciences</em>, <em>71</em>(6), 2230&ndash;2243. https://doi.org/10.1175/JAS-D-13-058.1</p>

opencc-by-4.0May 2018View details →
zenodo36/100

Simulated coordinated impacts of the previous autumn NAO and winter El Niño on the winter aerosol concentrations over eastern China

<p>The simulated aerosol concentrations and the model input meteorology fields (SLP and wind at 850 hPa) , as well as the data description files are listed.</p>

opencc-by-4.0Jun 2019View details →
zenodo36/100

Data from : "The massive 2016 marine heatwave in the Southwest Pacific: an "El Niño - Madden-Julian Oscillation" compound event"

<p>File : PD-JRA-v1-c6_TMLtrend_1993-2022.nc</p> <p>Daily mixed layer temperature budget between 1993 and 2022 from a NEMO simulation.</p> <p>Data were extracted over the Southwest Pacific region [142.5&deg;E-222.5&deg;E;45&deg;S;1&deg;N].</p> <p>These data were used in Dutheil et al., (2024) The massive 2016 marine heatwave in the Southwest Pacific: an &ldquo;El Ni&ntilde;o - Madden-Julian Oscillation&rdquo; compound event</p>

opencc-by-4.0Jul 2024View details →
zenodo36/100

The 2023 global warming spike was driven by El Niño/Southern Oscillation (Data)

<p>GFDL FLOR and CM2.1 surface temperature datasets used in:<br>Raghuraman et al., 2024, Atmospheric Chemistry and Physics,<br>"The 2023 global warming spike was driven by El Ni&ntilde;o/Southern Oscillation"</p> <p>Point of Contact: Shiv Priyam Raghuraman, sraghur2@illinois.edu</p> <p>All other model data files used in paper can be downloaded from their respective websites (see paper's "Data availability" section).</p>

opencc-by-4.0Sep 2024View details →
zenodo36/100

CESM experiments for intraseasonal oscillation intensity changes in El Niño and La Niña developing summers

<p>&nbsp; &nbsp;Experiments are conducted using version 5.2 of Community Atmospheric Model (CAM-5.2; https://www.cesm.ucar.edu/models/cesm1.1/cam/). CAM is the atmosphere component of Community Earth System Model (CESM) developed by the National Center for Atmospheric Research (NCAR). The model resolution used in this study is f19_g16, with f19 finite volume grid (1.9&ordm; latitude by 2.5&ordm; longitude) for the atmosphere and land components combined with the gx1v6 displaced pole grid (approximately 1&ordm;) for the ocean and ice components.</p> <p>&nbsp;&nbsp;&nbsp;Four sets of numerical experiments are performed in this study:</p> <ol> <li>Full SST forcing simulation (full-SST run): The CAM is forced by global monthly OI SST and integrated from January 1982 to December 2020.</li> <li>Climatological SST forcing simulation (CLM-SST run): The CAM is integrated for 30 years forced by global climatological mean monthly SST obtained from OI SST data for the period of January&nbsp;1982 to December 2020.</li> <li>Tropical central-eastern Pacific SST forcing simulation (CEP-SST run): The SST forcing field is composed of two parts: total monthly SST in the domain of 15&deg;S-15&deg;N and 160&deg;E-80&deg;W and climatological mean monthly SST in the other regions. The CAM is integrated from January 1982 to December 2020.</li> <li>Sensitivity experiments of tropical central-eastern Pacific SST anomalies during ENSO events: Composite SST anomalies in El Ni&ntilde;o and La Ni&ntilde;a events in the region of 15&deg;S-15&deg;N and 160&deg;E-80&deg;W and the above SST anomaly fields multiplied by -1 are added to climatological mean monthly SST from May to December. Climatological mean monthly SST is used in the other regions and months. The CAM is integrated for 30 years in these experiments. These experiments are referred to as EPEL, EPLA, EPEL-reverse and EPLA-reverse, respectively.</li> </ol>

opencc-by-4.0Aug 2021View details →
zenodo36/100

Fig. 1 in Spatial and temporal variation of benthic fish assemblages during the extreme drought of 1997-98 (El Niño) in the middle rio Negro, Amazonia, Brazil

Fig. 1. Study area in middle rio Negro basin (a) and detail of the sampling sites (b).

opencc-by-4.0Sep 2004View details →
zenodo36/100

Fig. 2 in Spatial and temporal variation of benthic fish assemblages during the extreme drought of 1997-98 (El Niño) in the middle rio Negro, Amazonia, Brazil

Fig. 2. River level during annual flood cycles. Large arrows denote dates of sampling expeditions.

opencc-by-4.0Sep 2004View details →
zenodo36/100

Supporting data for: Oceanic and atmospheric drivers of post-El-Niño chlorophyll rebound in the equatorial Pacific

<p>The GFDL ESM2M, ESM4.1, ESM4.1-static simulation data used for ENSO related chlorophyll and iron analysis in the study are available in this repository.&nbsp;&nbsp;</p> <p>Please contact&nbsp;<a href="mailto:hyung-gyu.lim@noaa.gov">hyung-gyu.lim@noaa.gov</a>&nbsp;for further questions..&nbsp;</p> <p>The project on &quot;Oceanic and atmospheric drivers of post-El-Ni&ntilde;o chlorophyll rebound in the equatorial Pacific&quot; is implemented based on below dataset that is submitted to Geophysical Research Letters at September 2021</p> <p>regridded by 1 degree horizontal resolution for the tropical Pacific region [120E-60W, 20N-20S]</p> <p>ESM2M : chl, temp, fed, no3 for 1001-1100 years</p> <p>ESM4.1: chl, thetao, dfe, no3, od550dust, dep_dry_fed, dep_wet_fed for 501-650 years</p> <p>ESM4.1-static: chlos, dfeos, tos for 501-650 years</p> <p>The tar file in this submission&nbsp;holds the above data.&nbsp;</p>

opencc-by-4.0Sep 2021View details →
zenodo36/100

Potential Impact of Winter–Spring North Atlantic Tripole SSTAs on the Following Autumn–Winter El Niño–Southern Oscillation: Bridging Role of the Tibetan Plateau

<p>This is the key model data of &quot;Potential Impact of Winter&ndash;Spring North Atlantic Tripole SSTAs on the Following Autumn&ndash;Winter El Ni&ntilde;o&ndash;Southern Oscillation: Bridging Role of the Tibetan Plateau&quot;. The data includes&nbsp;the last 25 years data of the CTRL experiment, and&nbsp;25&nbsp;years data of the CTRL_NTP experiment, the NA_ST&nbsp;experiment, and&nbsp;the NA_ST_NTP experiment, respectively.&nbsp;&quot;2D&quot; is two-dimensional variables , &quot;3D&quot; is three-dimensional variables, and &quot;pottmp&quot; is ocean&nbsp;potential temperature.</p>

opencc-by-4.0Feb 2023View details →
dryad36/100

2015/16 El Niño increased water demand and pushed plants from a Mesic tropical montane grassland beyond their hydraulic safety limits

<p>In 2015/16, a strong El Niño event caused anomalously high temperatures and reduced precipitation resulting in Pantropical drought‐induced diebacks and wildfires. Although many studies have documented the El Niño impacts on tropical forests, little we know about its effects on tropical grasslands. Here, we investigated plant drought responses during and after the 2015/16 El Niño event (Jun 2016 to Aug 2017) in 12 species with contrasting drought strategies (tolerance, avoidance and escape) in a Brazilian tropical montane grassland. We tested if (1) the El Niño event induced meteorological drought anomalies, (2) the atmospheric and/or soil drought led to plant water stress and (3) plants showed signs of drought recovery. In contrast to other tropical areas, we found that the 2015/16 El Niño event did not strongly affect precipitation in our study site. However, it increased air temperature and vapour pressure deficit, thus pushing all grassland species, even the most drought‐tolerant ones, beyond their hydraulic safety margins during the dry season. Most species showed signs of drought recovery, returning to positive hydraulic margins in the wet season after the El Niño. However, the finding that all evaluated species, regardless of their drought‐response strategy, are already operating close to their hydraulic safe thresholds for stomatal closure and turgor loss suggests that this cool–humid tropical montane grassland is especially vulnerable to meteorological extremes exacerbated by the additive effects of El Niño and climate change.</p>

opencc-zeroApr 2023View details →
zenodo36/100

Role of the Maritime Continent in the remote influence of Atlantic Niño on the Pacific

<p>This repository provides the source&nbsp;data to generate the figures in this study.&nbsp;</p> <p>For more details, please see:</p> <p>Liu, S., Chang, P., Wan, X., Richter I.&nbsp;<em>et al.</em>&nbsp;Role of the Maritime Continent in the remote influence of Atlantic Ni&ntilde;o on the Pacific.&nbsp;<em>Nat Commun</em>&nbsp;(2023).</p> <p>&nbsp;</p> <p>Within the&nbsp;zipped folder named Source Data, the relevant raw data from each figure (in the main manuscript and Supplementary Information) are represented by a single Excel document. The Readme.txt file provides a detailed description of the format of the raw data.</p> <p>&nbsp;</p> <p>If there is any problem solving with the data, please contact with S.L.&nbsp;(liusiying@stu.ouc.edu.cn). Thank you!</p>

opencc-by-4.0May 2023View details →
dryad36/100

Results of linear ocean model experiment for: Dual wave energy sources for the Atlantic Niño events identified by wave energy flux in case studies

<p>These are sensitivity experiments designed by manipulating the wind forcing that drives the linear ocean model to investigate the difference in equatorial waves in 1999, 2019, and 2021. </p>

opencc-zeroJun 2023View details →
zenodo36/100

Los niños de Cantabria a Félix

Monumento situado en el recinto del palacio de la Magdaleda en Santander (Cantabria) Source: Objaverse 1.0 / Sketchfab

opencc-byJul 2022View details →
ClinicalTrials.gov36/100

Child-Adult Relationship Enhancement in Primary Care (PriCARE) / Criando Niños Con CARIÑO (CARIÑO)

ClinicalTrials.gov study NCT05233150. IPD Sharing: YES. Countries: 1. Publications: 1.

controlledIPD-YESFeb 2026View details →
dryad36/100

Coupling and de-coupling of the El Niño Southern Oscillation to the supply of larval fishes to benthic populations in the Hawaiian Islands

Open the record for dataset details and reuse information.

publicJun 2024View details →
dryad36/100

Data from: El Niño drives a widespread ulcerative skin disease outbreak in Galapagos marine fishes

Open the record for dataset details and reuse information.

publicNov 2018View details →
dryad36/100

Data from: Coupling is key for the tropical Indian and Atlantic Oceans to boost super El Niño

Open the record for dataset details and reuse information.

publicAug 2024View details →
dryad36/100

2015/16 El Niño increased water demand and pushed plants from a Mesic tropical montane grassland beyond their hydraulic safety limits

Open the record for dataset details and reuse information.

publicMay 2023View details →
dryad36/100

Results of linear ocean model experiment for: Dual wave energy sources for the Atlantic Niño events identified by wave energy flux in case studies

Open the record for dataset details and reuse information.

publicJun 2023View details →

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