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A semi-dynamic model of active pipe-embedded building envelope for thermal performance evaluation

机译:主动管埋式建筑围护结构的半动力学模型,用于热性能评估

摘要

Active pipe-embedded building envelope is a new kind of pipe-embedded building external wall/roofs. Usually, pipes are embedded in the wall slab or roof slab to allow water circulating in these pipes for heat transfer. Low-grade energy sources can be used for this structure since the enlarged heat transfer surface between the slab mass and water in the pipe allowing for substantial heat flow for relatively small temperature difference. This structure may reduce building cooling/heating load and improve indoor thermal comfort by intercepting the heat/coolth from the ambient air to indoor space. This paper presents a semi-dynamic model of this structure for thermal performance evaluation for system design or indoor environment control etc. This semi-dynamic model is a coupled model. The first part is a simplified dynamic RC model (i.e., resistance and capacitance model). The heat transfer along the width of this structure can be predicted easily by the RC model. The second part is a classical NTU model for evaluating the heat transfer along the pipe and total heat transfer on both surfaces of this structure. A CFD model is developed to act as a virtual experimental test rig to simulate the thermal characteristics of this structure. The simulated results are used to validate this semi-dynamic model and its performance prediction.
机译:主动管道嵌入式建筑物围护结构是一种新型的管道嵌入式建筑物外墙/屋顶。通常,将管嵌入墙板或屋顶板中,以允许水在这些管中循环以进行热传递。低级能源可用于此结构,因为板坯和管道中水之间的传热表面扩大,允许相对较小的温差产生大量热量。该结构可以通过拦截从周围空气到室内空间的热量/凉度来减少建筑物的制冷/暖气负荷并提高室内热舒适度。本文提出了这种结构的半动力学模型,用于系统设计或室内环境控制等的热性能评估。该半动力学模型是耦合模型。第一部分是简化的动态RC模型(即电阻和电容模型)。沿该结构宽度的传热可以通过RC模型轻松预测。第二部分是经典的NTU模型,用于评估沿管道的传热和该结构两个表面上的总传热。开发了CFD模型以充当虚拟实验测试台以模拟该结构的热特性。仿真结果用于验证该半动态模型及其性能预测。

著录项

  • 作者

    Zhu Q; Xu X; Gao J; Xiao F;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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