mine how climate might change in response to greenhouse gas (GHG) accumulation in the upper atmosphere. The Intergovernmental Panel on Climate Change (IPCC) has a process SUMMARY | APRIL 2010 by which teams submit models for use in IPCC assessment reports. Assessment Report 4 (AR4) incorporated 24 models, whereas Assessment Report 5 (AR5) included 61 models. The analysis presented in this policy note is based on the following four AR5 models: Table 3. Rainfall in the driest three months by region, 1950–2000 Percentile 5th 25th 50th 75th 95th 1. Luzon 27 60 135 244 410 1.1 Luzon 27 55 130 248 416 1.2 CAR 32 106 156 226 326 2. Visayas 110 193 251 444 571 3. Mindanao 235 300 374 473 619 3.1 Mindanao 229 303 386 492 624 3.2 ARMM 257 284 315 388 422 Total 32 129 256 383 562 Source: Constructed by authors based on WorldClim version 1.4 (Hijmans et al. 2005). Region 1. GFDL-ESM2M, which was developed by the National Oceanographic and Atmosphere Administration’s General Fluid Dynamics Laboratory (GFDL) (Dunne et al. 2012, 2013) Figure 5. Mean daily maximum temperature in the warmest month, 1950–2000 2. HadGEM2-ES, the Hadley Centre Global Environmental Model (HadGEM), from the Met Office Hadley Centre (Collins et al. 2011; Martin et al. 2011) 3. IPSL-CM5A-LR, generated by Institut Pierre-Simon Laplace (IPSL) (Dufresne et al. 2013) 4. MIROC-ESM-CHEM, (MIROC), from the Japan Agency for Marine-Earth Science and Technology, Atmosphere and Ocean Research Institute (University of Tokyo), and National Institute for Environmental Studies (Sakamoto et al. 2012) In AR5, each of the above-named models employed five different assumptions about GHG emissions, but the analysis in this policy note is limited to the assumption of the highest GHG emissions—Representative Concentration Pathway (RCP) 8.5—which is most commonly used by researchers. Projected changes in yearly precipitation from the 1950– 2000 baseline period to the climate in 2050 are shown in Figure 6, and are quantified by regional grouping in Table 5. All of the models indicate that the Philippines will generally receive more rainfall; the median amount averaged across the nation is 256 millimeters. Source: Constructed by authors based on WorldClim version 1.4 (Hijmans et al. 2005). Table 4. Mean daily maximum temperature in the warmest month by region, 1950–2000 Percentile 5th 25th 50th 75th 95th 1. Luzon 25.3 28.7 30.2 30.7 31.5 1.1 Luzon 26.5 29.2 30.3 30.8 31.5 1.2 CAR 21.4 24.5 27.6 29.9 30.8 2. Visayas 27.9 29.5 30.2 30.6 31.3 3. Mindanao 25.5 28.4 30.0 30.8 31.8 3.1 Mindanao 25.6 28.4 30.0 30.7 31.7 3.2 ARMM 25.2 28.1 30.5 31.5 32.1 Total 25.7 28.9 30.1 30.7 31.5 Source: Constructed by authors based on WorldClim version 1.4 (Hijmans et al. 2005). Region While the averages from the climate models do not differ greatly for the country as a whole, regional differences are substantial. The most obvious of these are the significantly drier portion of CAR and western Luzon under the GFDL model, and the significantly drier portion of Mindanao (most of central and south) and ARMM under the HadGEM model (which also has a modestly drier portion in western Luzon). It should be noted that these significantly drier areas are likely to influence the model results in their respective areas. PROJECTED DIFFERENCES AMONG REGIONS UNDER CLIMATE CHANGE General circulation models (GCMs), also known as global climate models, are developed by climate scientists to deter3

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