首页> 外文期刊>Journal of building performance simulation >Heating and cooling in high-rise buildings using facade-integrated transparent solar thermal collector systems
【24h】

Heating and cooling in high-rise buildings using facade-integrated transparent solar thermal collector systems

机译:使用立面集成式透明太阳能集热器系统对高层建筑进行加热和冷却

获取原文
获取原文并翻译 | 示例

摘要

New facades of high-rise buildings often include renewable energy converters to allow "green building" operation. At the same time, numerous tenants value visual transparency. Transparent solar thermal collectors (TSTCs) aim at decreasing the non-renewable primary energy demand and increasing the visual transparency at the same time. On the one hand, this paper presents the main modelling challenges that arise when considering building facades and especially integrated TSTC systems. New transient systems simulation (TRNSYS) [Beckman, W. A., L. Broman, A. Fiksel, S. A. Klein, E. Lindberg, M. Schuler, and J. Thornton. 1994. "TRNSYS The Most Complete Solar Energy System Modelling and Simulation Software." Renewable Energy 5 (1-4): 486-488] types have been especially developed for this purpose. A simplified model is presented for comparison purposes. On the other hand, the overall performance for a building with facade-integrated TSTC, as measured by its non-renewable primary energy demand, is treated. This is achieved by considering a complete simulation model coupling the TSTC, building and heating, ventilation and air conditioning operation. Possibilities for primary energy savings are investigated using the building mass as additional thermal storage.
机译:高层建筑的新立面通常包括可再生能源转换器,以允许“绿色建筑”运行。同时,众多租户重视视觉透明性。透明太阳能集热器(TSTC)旨在减少不可再生的一次能源需求,并同时增加视觉透明性。一方面,本文介绍了在考虑建筑物外墙,尤其是集成TSTC系统时出现的主要建模挑战。新的暂态系统仿真(TRNSYS)[Beckman,W. A.,L. Broman,A. Fiksel,S. A. Klein,E. Lindberg,M. Schuler和J. Thornton。 1994年。“ TRNSYS最完整的太阳能系统建模和仿真软件。”为此专门开发了可再生能源5(1-4):486-488]类型。出于简化目的,提供了一个简化的模型。另一方面,对具有外墙集成式TSTC的建筑物的整体性能进行了评估,以其不可再生的一次能源需求来衡量。这是通过考虑将TSTC,建筑物和采暖,通风和空调运行耦合在一起的完整仿真模型来实现的。利用建筑质量作为额外的蓄热器,研究了一次节能的可能性。

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