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'MILAGRO'; A SUSTAINABLE CO-HOUSING COMMUNITY LOCATED IN THE SONORAN DESERT IN TUCSON, ARIZONA, USA.

机译:“milagro”;一个可持续的共住房社区,位于斯诺森沙漠在图森,亚利桑那州,美国。

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Using ecological principles, MILAGRO, a co-housing community located in Tucson, Arizona, at the heart of the Sonoran Desert, is committed to provide the people an earth-friendly neighborhood. Its goal is to demonstrate resource, energy efficiency and passive solar technologies to demonstrate standards for sustainable and environmentally responsive architecture in balance with nature. MILAGRO complies with Tucson Electric Power Company's incentive program "TEP Guarantee" and exceeds the energy code requirements for the Sustainable Energy Standards (SES). During the design phase, the author (project's energy consultant) collaborated with the project's planner and architects to implement all relevant energy conservation and passive solar strategies appropriate to the unique set of climate conditions of the site. All the units were elongated east-west and have a two-story compact design. Surface to Volume Ratio (SVR) is minimized (0.12). The 15" Adobe walls tempers the temperature fluctuation and provide proper thermal storage. Our first phase energy performance prediction for space conditioning load was 31.1 Kbtu/ ft2 cooling and 12.3 Kbtu/ft2 with a 3.4 Ton demand mechanical system. Through optimized thermal mass, night ventilation, double vented roof (ice-house technology), advanced windows, shading and landscaping, and efficient mechanical systems, the space conditioning load was reduced by 55.7 %, yielding a peak demand which can be met by a 2 ton mechanical unit. Source consumption is reduced by 73.9% to pass and exceeds all local energy code requirements. This paper demonstrates the energy analysis and optimization process and describes the energy conservation and passive solar strategies and their implementation in the final design of Milagro.
机译:使用生态原则,一个位于亚利桑那州图森的共同住房社区,伊利桑那州的奥尼森沙漠中心,致力于为人民提供一个友好的邻居。其目标是展示资源,能源效率和被动太阳能技术,以证明与自然平衡的可持续和环保架构的标准。 MilAgro符合图森电力公司的激励计划“TEP保证”,超过了可持续能源标准(SES)的能源代码要求。在设计阶段,作者(项目的能源顾问)与项目的计划和建筑师合作,以实施适合于现场独特的气候条件的所有相关的能源节约和被动的太阳能策略。所有单位都是伸长的东西,拥有两层紧凑的设计。最小化表面与体积比(SVR)(0.12)。 15“Adobe Walls Tempers温度波动并提供适当的热存储器。我们的第一阶段能量性能预测空间调节载荷为31.1 KBTU / FT2冷却,12.3 KBTU / FT2,机械系统的3.4吨需求。通过优化的热质量,夜晚通风,双通风屋顶(冰屋技术),先进的窗户,遮阳和景观,以及高效的机械系统,空间调理载荷降低了55.7%,产生了2吨机械单元可以满足的峰值需求。源消费减少了73.9%,通过并超过了所有本地能源代码要求。本文展示了能源分析和优化过程,并描述了节能和被动的太阳能战略及其在MilAgro的最终设计中的实现。

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    《Solar World Congress》|2005年||共5页
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