Reductions in labour capacity from heat stress under climate warming
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[1] Reto Knutti,et al. Robust projections of combined humidity and temperature extremes , 2013 .
[2] R. Stouffer,et al. Influence of Ocean and Atmosphere Components on Simulated Climate Sensitivities , 2013 .
[3] Monique Hoogwijk,et al. Energy Resources and Potentials , 2012 .
[4] Ronald,et al. GFDL’s ESM2 Global Coupled Climate–Carbon Earth System Models. Part I: Physical Formulation and Baseline Simulation Characteristics , 2012 .
[5] Karl E. Taylor,et al. An overview of CMIP5 and the experiment design , 2012 .
[6] Keith W. Oleson,et al. Contrasting urban and rural heat stress responses to climate change , 2012 .
[7] S. Sherwood,et al. Exceedance of heat index thresholds for 15 regions under a warming climate using the wet‐bulb globe temperature , 2012 .
[8] N. Nakicenovic,et al. Global Energy Assessment – Toward a Sustainable Future , 2012 .
[9] K. Calvin,et al. The RCP greenhouse gas concentrations and their extensions from 1765 to 2300 , 2011 .
[10] D. Rutledge. Estimating long-term world coal production with logit and probit transforms , 2011 .
[11] Steven C. Sherwood,et al. An adaptability limit to climate change due to heat stress , 2010, Proceedings of the National Academy of Sciences.
[12] R. Betts,et al. Climate change in cities due to global warming and urban effects , 2010 .
[13] John F. B. Mitchell,et al. The next generation of scenarios for climate change research and assessment , 2010, Nature.
[14] Gerd Jendritzky,et al. The thermal environment of the human being on the global scale , 2009, Global health action.
[15] Tord Kjellstrom,et al. Workplace heat stress, health and productivity – an increasing challenge for low and middle-income countries during climate change , 2009, Global health action.
[16] N. Meinshausen,et al. Greenhouse-gas emission targets for limiting global warming to 2 °C , 2009, Nature.
[17] E. Guilyardi,et al. UNDERSTANDING EL NINO IN OCEAN-ATMOSPHERE GENERAL CIRCULATION MODELS : Progress and Challenges , 2008 .
[18] Robert Davies-Jones,et al. An Efficient and Accurate Method for Computing the Wet-Bulb Temperature along Pseudoadiabats , 2008 .
[19] T. Reichler,et al. How Well Do Coupled Models Simulate Today's Climate? , 2008 .
[20] Ken Parsons,et al. Heat stress standard ISO 7243 and its global application. , 2006, Industrial health.
[21] Yoram Epstein,et al. Thermal comfort and the heat stress indices. , 2006, Industrial health.
[22] S. Klein,et al. GFDL's CM2 Global Coupled Climate Models. Part I: Formulation and Simulation Characteristics , 2006 .
[23] M. Sawka,et al. Heat Stress Control and Heat Casualty Management , 2003 .
[24] J. Houghton,et al. Climate change 2001 : the scientific basis , 2001 .
[25] J. Palutikof,et al. Climate change 2007 : impacts, adaptation and vulnerability , 2001 .
[26] T. Delworth,et al. Changes in Heat Index Associated with CO2-Induced Global Warming , 1999 .
[27] David Bolton. The Computation of Equivalent Potential Temperature , 1980 .
[28] S. Manabe,et al. A CO2-climate sensitivity study with a mathematical model of the global climate , 1979, Nature.
[29] R. Steadman. The Assessment of Sultriness. Part I: A Temperature-Humidity Index Based on Human Physiology and Clothing Science , 1979 .
[30] R. Simpson. On The Computation of Equivalent Potential Temperature , 1978 .
[31] Arnold Wexler,et al. Vapor Pressure Formulation for Water in Range 0 to 100 °C. A Revision , 1976, Journal of research of the National Bureau of Standards. Section A, Physics and chemistry.
[32] S. Manabe,et al. The Effects of Doubling the CO2 Concentration on the climate of a General Circulation Model , 1975 .
[33] American Conference Of Governmental Industrial Hygienists 1998 Ventilation A O , 2019 .