首页> 外文会议>ES2011;International conference on energy sustainability >A Numerical Model for Thermal Performance of an Unglazed Transpired Solar Collector
【24h】

A Numerical Model for Thermal Performance of an Unglazed Transpired Solar Collector

机译:无釉蒸发太阳集热器热性能数值模型

获取原文

摘要

In this paper, we will present a numerical model for estimating the thermal performance of unglazed transpired solar collectors located on the Breck School campus in Minneapolis, Minnesota. The solar collectors are installed adjacent to the southeast facing wall of a field house. The collectors preheat the intake air before entering the primary heating unit. The solar collector consists of 8 separate panels (absorber plates). Four fans are connected to the plenum that is created by the absorber plates and the adjoining field house wall. All fresh air for the field house is provided by the solar collectors before being filtered and heated by four, independent two stage natural gas fired heaters. Moreover, the following data were collected onsite using a data acquisition system: indoor field house space temperature, ambient air temperature, wind speed, wind direction, the plenum exit air temperature, the absorber plate temperature, and the air temperatures inside the plenum. The energy balance equations for the collector, the adjacent building wall, and the plenum are formulated. The numerical model is used to predict the air temperature rise inside the plenum, recaptured heat loss from the adjoining building wall, energy savings, and the efficiency of the collectors. The results of the numerical model are then compared to the results obtained from the onsite measurements; which are in good agreement. The model presented in this paper is simple yet accurate enough for architects and engineers to use it with ease to predict the thermal performance of a collector.
机译:在本文中,我们将提供一个数值模型,用于估算位于明尼苏达州明尼阿波利斯市Breck School校园的无釉蒸发太阳集热器的热性能。太阳能收集器被安装在与现场房屋的朝东南墙相邻的位置。收集器在进入主加热单元之前对进气进行预热。太阳能收集器由8个单独的面板(吸收板)组成。四个风扇连接到由减震器板和相连的现场房屋壁所形成的气室。野外房屋的所有新鲜空气由太阳能收集器提供,然后由四个独立的两级天然气燃烧加热器过滤和加热。此外,使用数据采集系统在现场收集了以下数据:室内野外棚空间温度,环境空气温度,风速,风向,通风室出风温度,吸收板温度和通风室内部的空气温度。制定了集热器,相邻建筑墙体和气室的能量平衡方程式。数值模型用于预测通风室内的空气温度升高,相邻建筑墙体重新捕获的热量损失,节能效果以及收集器的效率。然后将数值模型的结果与现场测量的结果进行比较;这是非常一致的。本文介绍的模型非常简单,但准确度足以让建筑师和工程师轻松地使用它来预测集热器的热性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号