首页> 外文会议>ISES solar world congress;IEA SHC International conference on solar heating and cooling for buildings and industry >Towards a sustainable bioclimatic approach for the Peruvian high Andean rural area: Evaluation of the thermal contribution of a greenhouse attached to a dwelling
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Towards a sustainable bioclimatic approach for the Peruvian high Andean rural area: Evaluation of the thermal contribution of a greenhouse attached to a dwelling

机译:为秘鲁高安第斯山区农村地区采取可持续的生物气候方法:评估与住宅相连的温室的热能贡献

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This study includes the evaluation and validation of two experimental housing modules built in Imata, Arequipa, Peru, at 4500 meters above sea level (masl) and with a very cold climate. The modules are similar, differing only in that one of them has a greenhouse attached to the north wall. The design and materials used in the module envelopes are similar to what is mostly used locally. For the simulation work and the validation of the energetic behavior, both modules were equipped for the acquisition of the temperatures in the interior, and for the simulation, the EnergyPlus software was used. The exchange of air between the module with the greenhouse and its greenhouse was controlled by means of opening and closing the door and window that connected them, using different configurations. When the door and the window are open during daytime, the temperature inside the module can increase 5.7 °C with respect to the module without the greenhouse, and in relation to the external temperature, up to 12.1 °C during the day and up to 16 °C during the night. The data obtained with simulation are in excellent agreement with the data measured inside the two modules for all the proposed configurations. These results strengthen the proposal to use attached greenhouses to obtain sustainable heating for rural high Andean homes which, for the most part, do not have any heating.
机译:这项研究包括评估和验证在秘鲁阿雷基帕(Ireata)的伊玛塔(Imata)建造的两个实验性住房模块,它们的海拔高度(masl)为4500米,且气候非常寒冷。这些模块是相似的,不同之处仅在于其中一个模块的北墙附有一个温室。模块外壳中使用的设计和材料与本地使用的大多数相似。为了进行模拟工作和验证能量行为,两个模块都配备了用于获取室内温度的工具,并且对于模拟,使用了EnergyPlus软件。组件与温室及其温室之间的空气交换是通过使用不同的配置打开和关闭连接它们的门和窗户来控制的。当白天门和窗户打开时,相对于没有温室的模块,模块内部的温度可以升高5.7°C,并且相对于外部温度,白天最高可以升高12.1°C,最高温度可以达到16晚上的摄氏温度。对于所有建议的配置,通过仿真获得的数据与在两个模块内部测得的数据非常吻合。这些结果加强了使用附属的温室为安第斯山脉的农村房屋提供可持续供暖的建议,这些房屋大部分没有供暖。

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