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As climate has warmed over recent years, a new pattern of more frequent and more intense weather events has unfolded across the globe. Climate models simulate such changes in extreme events, and some of the reasons for the changes are well understood. Warming increases the likelihood of extremely hot days and nights, favors increased atmospheric moisture that may result in more frequent heavy rainfall and snowfall, and leads to evaporation that can exacerbate droughts. Even with evidence of these broad trends, scientists cautioned in the past that individual weather events couldn't be attributed to climate change. Now, with advances in understanding the climate science behind extreme events and the science of extreme event attribution, such blanket statements may not be accurate. The relatively young science of extreme event attribution seeks to tease out the influence of human-cause climate change from other factors, such as natural sources of variability like El Niño, as contributors to individual extreme events. Event attribution can answer questions about how much climate change influenced the probability or intensity of a specific type of weather event. As event attribution capabilities improve, they could help inform choices about assessing and managing risk, and in guiding climate adaptation strategies. This report examines the current state of science of extreme weather attribution, and identifies ways to move the science forward to improve attribution capabilities.
This three-volume A-to-Z compendium consists of over 300 entries written by a team of leading international scholars and researchers working in the field. Authoritative and up-to-date, the encyclopedia covers the processes that produce our weather, important scientific concepts, the history of ideas underlying the atmospheric sciences, biographical accounts of those who have made significant contributions to climatology and meteorology and particular weather events, from extreme tropical cyclones and tornadoes to local winds.
This book focuses on the Chinese health impact induced by ambient temperature variation, especially the epidemiology-based exposure-response relationship with the mortality and morbidity from respiratory, cardiovascular diseases, and mental health among Chinese population.A great number of epidemiological studies have reported that ambient temperature is closely associated with a wide range of health outcomes, such as mortality, cardiovascular and respiratory events, adverse birth outcome, and some infectious diseases, such as dengue fever, malaria. Although a number of epidemiological studies in western countries have evaluated the adverse health effects of ambient temperature, the exposure-response relationship from these countries cannot simply be applied to the Chinese population due to the large differences in temperature profile, exposure pattern, as well as the population vulnerability. This book will provide up-to-date estimates of the magnitude of adverse health effects of ambient temperature in the Chinese population. We hope to provide readers with a comprehensive and organized body of information in the area of Ambient Temperature and health.