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Evaluation of the Passive Cooling Potential of Thermal Mass Inherent in Medium to Large Commercial Buildings

机译:评估媒体到大型商业建筑中固有的热质量的被动冷却电位

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摘要

Typical commercial construction inherently contains large surface areas of relatively thin mass located in the floor slabs. This research asks how effective this mass could be for passive cooling, relative to other mass depths, if it were to be exposed and used as thermal mass. Although much of the rich literature on thermal mass has been conducted with far greater mass depths, a more limited amount of research suggests that because the surface heat transfer rate is limited, the focus should be on the surface area of exposed mass, not its depth. This presents an opportunity for more buildings to behave more thermally massively, if the mass inherent in typical floor slabs contains utility, particularly over diurnal cycles. In all climates analyzed, it was found that there is a pronounced shoulder where energy savings from passive cooling of increasing mass depths was steep until roughly 7.5-10cm, and beyond this point the achieved energy savings diminished rapidly. When considering the embodied energy of concrete, the incremental benefit of added mass beyond a typical topping slab of 10 cm does not justify the incremental embodied energy cost from a total energy standpoint alone.
机译:典型的商业结构固有地包含位于地板板中的相对薄质量的大表面积。该研究询问这种质量如何用于被动冷却,相对于其他质量深度,如果要暴露并用作热质量。虽然热质量的大部分富含文献具有更大的质量深度,但研究更有限的研究表明,由于表面传热速率有限,焦点应在暴露质量的表面区域,而不是其深度。如果典型地板板块含有效用,则更多地提供更多建筑物的机会,特别是典型的楼板中固有的块状。含有效用,特别是在昼夜循环上。在分析的所有气候中,发现有一个明显的肩部,较大的肩部的节能随着质量深度的增加而节省直至大约7.5-10厘米,并且超出了这一点,所以实现的节能迅速减少。在考虑混凝土的具体能量时,添加的质量超过10cm的典型顶部板块的增量益处并不合理于单独的总能量立场的增量体现能力。

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  • 来源
    《Journal of Architectural Engineering》 |2021年第2期|04021007.1-04021007.14|共14页
  • 作者

    John Nelson; Gregor Henze;

  • 作者单位

    Dept. of Civil Environmental and Architectural Engineering Univ. of Colorado UCB 428 Boulder CO 80309-0428 Senior Building Performance Analyst Integral Group Denver CO 80216;

    Dept. of Civil Environmental and Architectural Engineering Univ. of Colorado UCB 428 Boulder CO 80309-0428 National Renewable Energy Laboratory 15013 Denver West Parkway Golden CO 80401 Renewable and Sustainable Energy Institute UCB 027 Boulder CO 80309-0027;

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  • 正文语种 eng
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