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UC San Diego Decision Making using Real-time Observations for Environmental Sustainability (DEMROES)

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Zenodo2025-02-21 更新2026-05-26 收录
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UC San Diego Decision Making using Real-time Observations for Environmental Sustainability (DEMROES) An urban test bed for energy and water efficiency, meteorology, and air quality Original website: http://maeresearch.ucsd.edu/kleissl/demroes/ Meteorological conditions have implications on human activities. They affect human comfort and productivity (temperature, humidity), health (temperature, air pollution), and energy and water use (solar radiation, temperature). UCSD's proximity to the Pacific Ocean places it in a temperate microclimate frequently affected by sea breezes. In particular the occurrence of sea-breezes in daytime provides cool air eliminating need for widespread building air conditioning and associated energy use, but also advects moist and salt-laden air to campus which negatively affects the lifespan of indoor and outdoor electronic or metal components. We lack scientific knowledge about the occurrence of these microclimatological conditions and their effect on campus facilities management. We have established a wireless sensing network for environmental monitoring at UCSD facilities city-wide with the following objectives: Use the network as a demo and integrative educational and research system for UCSD students and faculty. Quantify the spatial distribution of meteorological conditions (i.e. sea breeze effect on temperature and humidity) on campus through a dense static network of weather stations. Provide campus facilities management with information to feed the energy management system (EMS) for building operation and energy conservation, and irrigation management. Extend pilot project into a massive city or regional scale sensing network. sponsored by Wells Fargo through the UCSD Environment and Sustainability Initiative Steve Relyea, Vice Chancellor, Business Affairs Paul Linden, Jan Kleissl, Faculty, Mechanical Engineering Johnson Controls supported by Don McLaughlin, Ryan Sullivan, Telecommunications John Dilliott, David Weil, Building Sustainability, Energy Services Doug Palmer, Bill Hodgkiss, Don Kimball. CalIT2 Steve Roberts, MAE Electronics & Sensors About data dat files include datasets for different locations on campus, spanning some time between 2010 and 2011 EBU2 files include solar irradiance data, for different days and years (2008-2021)

加州大学圣地亚哥分校(UC San Diego)面向环境可持续性的实时观测决策研究数据集(DEMROES,Decision Making using Real-time Observations for Environmental Sustainability) 这是一个用于能源与水效、气象学以及空气质量研究的城市测试平台。 原始官网:http://maeresearch.ucsd.edu/kleissl/demroes/ 气象条件对人类活动具有深远影响,其作用涵盖人类舒适度与生产力(受温度、湿度调控)、健康状况(受温度、空气污染影响)以及能源与水资源消耗(受太阳辐射、温度影响)。加州大学圣地亚哥分校毗邻太平洋,所处区域处于受海风频繁影响的温带微气候之中。日间海风的出现能够带来凉爽空气,从而减少建筑广泛使用空调的需求及相关能源消耗,但同时也会将潮湿且富含盐分的空气输送至校园,对室内外电子或金属组件的使用寿命产生负面影响。 目前学界对这类微气候条件的发生规律及其对校园设施管理的影响仍缺乏充分的科学认知。为此,研究团队在加州大学圣地亚哥分校全市范围内的设施中搭建了无线传感网络以开展环境监测,其核心目标如下: 1. 将该网络作为面向加州大学圣地亚哥分校师生的演示、综合教育与研究系统; 2. 通过密集部署的静态气象站网络,量化校园内气象条件的空间分布特征(即海风对温度与湿度的影响效应); 3. 为校园设施管理部门提供决策支撑信息,以服务于建筑运行与节能的能源管理系统(EMS,Energy Management System)以及灌溉管理工作; 4. 将该试点项目拓展至大规模城市或区域级传感网络。 本项目由富国银行(Wells Fargo)通过加州大学圣地亚哥分校环境与可持续发展倡议项目资助,关联资助方及人员包括:业务事务副校长Steve Relyea,机械工程系教职员工Paul Linden、Jan Kleissl,以及江森自控(Johnson Controls)。 本项目得到的支持团队包括:电信部门的Don McLaughlin、Ryan Sullivan;建筑可持续性与能源服务部门的John Dilliott、David Weil;CalIT2的Doug Palmer、Bill Hodgkiss、Don Kimball;MAE电子与传感器部门的Steve Roberts。 ### 数据说明 dat格式文件包含校园内不同点位的数据集,时间跨度为2010年至2011年的部分时段; EBU2格式文件包含不同日期与年份(2008年至2021年)的太阳辐照度数据。

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2025-02-21
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