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Muyin Wang

Datos Biográficos

ID7182067
NOMBREMuyin Wang
NOMBRESMuyin
APELLIDOWang
FIRMAWANG M
AFILIACIONESUniversity of Washington
ORCID0000-0001-5233-4588
VERIFICADOSí
TOTAL DE OBRAS6
TOTAL DE CITAS0
TOTAL COMO AUTOR6
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2007
AÑO MÁS RECIENTE DE PUBLICACIÓN2021
ÍNDICE H0
  • Precipitation response to climate change and urban development over the continental United States

    Open Access•Matei Georgescu, Ashley M Broadbent et al.•ARTICLE•Environmental Research Letters•2021

    Appropriately characterizing future changes in regional-scale precipitation requires assessment of the interactive effect owing to greenhouse gas-induced climate change and the physical growth of the built environment. Here we use a suite of medium resolution (20 km grid spacing) decadal scale simulations conducted with the Weather Research and Forecasting model coupled to an urban canopy parameterization to examine the interplay between end-of-c…

  • How do intermittency and simultaneous processes obfuscate the Arctic influence on midlatitude winter extreme weather events

    Open Access•James E Overland, Thomas J Ballinger et al.•ARTICLE•Environmental Research Letters•2021

    Pronounced changes in the Arctic environment add a new potential driver of anomalous weather patterns in midlatitudes that affect billions of people. Recent studies of these Arctic/midlatitude weather linkages, however, state inconsistent conclusions. A source of uncertainty arises from the chaotic nature of the atmosphere. Thermodynamic forcing by a rapidly warming Arctic contributes to weather events through changing surface heat fluxes and lar…

  • Key indicators of Arctic climate change

    Open Access•Jason E Box, William Colgan et al.•ARTICLE•Environmental Research Letters•2019

    Key observational indicators of climate change in the Arctic, most spanning a 47 year period demonstrate fundamental changes among nine key elements of the Arctic system. We find that, coherent with increasing air temperature, there is an intensification of the hydrological cycle, evident from increases in humidity, precipitation, river discharge, glacier equilibrium line altitude and land ice wastage. Downward trends continue in sea ice thicknes…

  • An integrated index of recent pan-Arctic climate change

    Open Access•James E Overland, Muyin Wang et al.•ARTICLE•Environmental Research Letters•2018

    We investigate climatic changes that have occurred in the Arctic over the period 1982–2017 through examination of ten observational cryospheric time series, and develop a new quantitative composite Arctic climate change index (ACCI). Using Factor Analysis highlights joint trends of winter temperature increases and sea ice loss, tundra shifts, and secondarily summer sea ice loss, spring snow loss, and Greenland land ice loss. An Arctic-wide atmosp…

  • Assessing summertime urban air conditioning consumption in a semiarid environment

    Open Access•Francisco Salamanca, Matei Georgescu et al.•ARTICLE•Environmental Research Letters•2013

    Evaluation of built environment energy demand is necessary in light of global projections of urban expansion. Of particular concern are rapidly expanding urban areas in environments where consumption requirements for cooling are excessive. Here, we simulate urban air conditioning (AC) electric consumption for several extreme heat events during summertime over a semiarid metropolitan area with the Weather Research and Forecasting (WRF) model coupl…

  • Cultural Differences in the Relationship Between Aging and the Correspondence Bias

    Fredda Blanchard–Fields, F Blanchard-Fields et al.•ARTICLE•The Journals of Gerontology…•2007•Referencias: 4

    Previous work suggests that older adults show a stronger correspondence bias than do young adults. In the present study we examine whether age differences in the correspondence bias are universal or if they differ across cultures. A sample of young and older adults from China completed an attitude-attribution paradigm. We compared these data with an existing American data set. We found cultural differences in the extremity of the ratings. Chinese…

Sin obras prominentes en esta página.

  • Cultural Differences in the Relationship Between Aging and the Correspondence Bias

    Fredda Blanchard–Fields, F Blanchard-Fields et al.•ARTICLE•The Journals of Gerontology…•2007•Referencias: 4

    Previous work suggests that older adults show a stronger correspondence bias than do young adults. In the present study we examine whether age differences in the correspondence bias are universal or if they differ across cultures. A sample of young and older adults from China completed an attitude-attribution paradigm. We compared these data with an existing American data set. We found cultural differences in the extremity of the ratings. Chinese…

  • Assessing summertime urban air conditioning consumption in a semiarid environment

    Open Access•Francisco Salamanca, Matei Georgescu et al.•ARTICLE•Environmental Research Letters•2013

    Evaluation of built environment energy demand is necessary in light of global projections of urban expansion. Of particular concern are rapidly expanding urban areas in environments where consumption requirements for cooling are excessive. Here, we simulate urban air conditioning (AC) electric consumption for several extreme heat events during summertime over a semiarid metropolitan area with the Weather Research and Forecasting (WRF) model coupl…

  • An integrated index of recent pan-Arctic climate change

    Open Access•James E Overland, Muyin Wang et al.•ARTICLE•Environmental Research Letters•2018

    We investigate climatic changes that have occurred in the Arctic over the period 1982–2017 through examination of ten observational cryospheric time series, and develop a new quantitative composite Arctic climate change index (ACCI). Using Factor Analysis highlights joint trends of winter temperature increases and sea ice loss, tundra shifts, and secondarily summer sea ice loss, spring snow loss, and Greenland land ice loss. An Arctic-wide atmosp…

  • Key indicators of Arctic climate change

    Open Access•Jason E Box, William Colgan et al.•ARTICLE•Environmental Research Letters•2019

    Key observational indicators of climate change in the Arctic, most spanning a 47 year period demonstrate fundamental changes among nine key elements of the Arctic system. We find that, coherent with increasing air temperature, there is an intensification of the hydrological cycle, evident from increases in humidity, precipitation, river discharge, glacier equilibrium line altitude and land ice wastage. Downward trends continue in sea ice thicknes…

  • Precipitation response to climate change and urban development over the continental United States

    Open Access•Matei Georgescu, Ashley M Broadbent et al.•ARTICLE•Environmental Research Letters•2021

    Appropriately characterizing future changes in regional-scale precipitation requires assessment of the interactive effect owing to greenhouse gas-induced climate change and the physical growth of the built environment. Here we use a suite of medium resolution (20 km grid spacing) decadal scale simulations conducted with the Weather Research and Forecasting model coupled to an urban canopy parameterization to examine the interplay between end-of-c…

  • How do intermittency and simultaneous processes obfuscate the Arctic influence on midlatitude winter extreme weather events

    Open Access•James E Overland, Thomas J Ballinger et al.•ARTICLE•Environmental Research Letters•2021

    Pronounced changes in the Arctic environment add a new potential driver of anomalous weather patterns in midlatitudes that affect billions of people. Recent studies of these Arctic/midlatitude weather linkages, however, state inconsistent conclusions. A source of uncertainty arises from the chaotic nature of the atmosphere. Thermodynamic forcing by a rapidly warming Arctic contributes to weather events through changing surface heat fluxes and lar…

Environmental Science (5 obras) · Climatology (4 obras) · Geography (4 obras) · Geology (4 obras) · Arctic (3 obras) · Arctic and Antarctic ice dynamics (3 obras) · Climate change (3 obras) · Climate variability and models (3 obras) · Meteorology (3 obras) · Oceanography (3 obras)

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