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Assessing and Reducing Exposure to Heat Waves in Cuyahoga County, Ohio.

机译:评估和减少俄亥俄州凯霍加县的热浪暴露。

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摘要

In the United States, more people die from heat waves than from any other type of natural disaster. Climate change will increase the frequency and intensity of extreme heat events. Fatalities during hot weather occur primarily in cities, in part due to the urban heat island effect.This dissertation addresses heat-related exposure in Cuyahoga County, Ohio and is structured around three complementary studies. The first study investigates the urban heat island effect using a mobile measurement platform. Variations in solar radiation and albedo led to greater-than-30°C shifts in the ground surface temperature. Air temperatures recorded downwind from forested areas were 0.25°C cooler than those recorded over impervious, bare soil, or grass land covers. Water provided a cooling effect that was roughly 2.7 times stronger than that of a forest. However, large areas of forest or water were necessary to reduce the local air temperature; 11.8 hectares of water (29.16 acres) resulted in only a 0.67°C reduction in temperature.A second study addresses exposure in single family detached houses. Five house types were modeled in thermal load software with different configurations of insulation, air infiltration, and windows to evaluate the effect of weatherization on annual energy usage, air-conditioning operation, and indoor temperature. Weatherization lowered the yearly cost to heat and cool a house by $260 to $480 USD; it also decreased electricity usage associated with air-conditioning by more than 35%. Weatherization reduced the required size of air-conditioning equipment by 40 to 50% per house. However, if windows remain closed during warm weather, weatherization treatments may increase exposure to temperatures above the ASHRAE thermal comfort zone.A final study investigates how professionals responsible for reducing exposure to high temperatures define and act to reduce temperature-related morbidity and mortality. Using a system of professions approach, professionals from the health, building science, and urban environment policy sectors were linked to tasks they consider their jurisdiction, such as cooling centers, residential energy efficiency, or developing codes and standards. Results from twenty-eight semi-structured interviews indicate barriers among programs. Collaborative efforts may help to bridge among disciplines and improve strategies to reduce exposure to future heat waves.
机译:在美国,死于热浪的人数多于其他任何类型的自然灾害。气候变化将增加极端高温事件的频率和强度。炎热天气中的死亡主要发生在城市中,部分原因是由于城市的热岛效应。本论文针对俄亥俄州库雅荷加县与热有关的暴露,并围绕三个补充研究进行了结构设计。第一项研究使用移动测量平台调查了城市热岛效应。太阳辐射和反照率的变化导致地表温度变化超过30°C。来自林区的顺风记录的气温比不透水的裸露土壤或草地覆盖的气温低0.25°C。水提供的冷却效果大约是森林的2.7倍。但是,为了降低当地的气温,需要大面积的森林或水域。 11.8公顷的水(29.16英亩)仅使温度降低了0.67°C。第二项研究针对的是单户独立屋中的暴露。在热负荷软件中对五种房屋类型进行了建模,这些房屋具有不同的隔热,空气渗透和窗户配置,以评估天气变化对年度能源使用,空调运行和室内温度的影响。天气化将房屋的供暖和制冷成本每年降低了260美元,至480美元;它还将与空调相关的用电量减少了35%以上。天气化使每所房子所需的空调设备尺寸减少了40%至50%。但是,如果在温暖的天气下窗户保持关闭状态,则进行风化处理可能会使暴露在ASHRAE热舒适区之上的温度增加。一项最终研究调查了负责减少高温暴露的专业人员如何定义并采取行动降低与温度相关的发病率和死亡率。使用专业系统方法,将健康,建筑科学和城市环境政策领域的专业人员与他们认为自己的管辖权相关的任务联系在一起,例如制冷中心,住宅能源效率或制定法规和标准。 28个半结构化访谈的结果表明了程序之间的障碍。共同努力可能有助于在各个学科之间架起桥梁,并改善战略以减少未来热浪的影响。

著录项

  • 作者

    Rajkovich Nicholas Bly;

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  • 年度 2014
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