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Sunspot analysis under varying conditions climate: Distributed radiation on cooling floor and its effect on dynamic thermal behaviour

机译:不同条件下的太阳黑子分析气候:冷却地板上的分布式辐射及其对动态热行为的影响

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摘要

The dynamic thermal simulation of buildings is a real challenge, in terms of regulations and labelling but also of decisions (implementation, materials choice, architectural design, rehabilitation.). Today, we lack reference models of the dynamic thermal behaviour of the cooling floor under solar radiation effect. In fact, the simulation models developed in literature are represented in a very simplified method and cannot be used for a detailed analysis of thermal comfort. The present study aims to reduce the knowledge gap and resolve the limitations such as (i) studying the effect of sunspot for a real weather conditions, (ii) visualize the dynamic thermal behaviour of indoor air and surface cooling floor relative to the sunspot shifting and (iii) predict different sunspot shape as a function of geographic location. A 3D model is presented in this paper to evaluate the sunspot impact on cooling floor coupled to underground tank under climatic conditions in Algeria. The sunspot is calculated using a coupled TRNSYS-FLUENT dynamic simulation. Simulations are run for different periods and weather conditions. The results have shown that the developed model can provide a real simulation of thermal performance of the cooling floor taking into account the sunspot shifting. The incident solar heat flux on cooling floor reaches a maximum of 300 W/m(2) for Bechar city and 120 W/m(2) for Oran city. A wide surface temperature ranges of 13 degrees C between the umbrageous and illuminated areas. For Oran weather conditions, the indoor air temperature in the umbrageous area is around 24 degrees C, while that of the illuminated area is 28 degrees C which can cause a temperature heterogeneity in the room.
机译:建筑物的动态热仿真是一个真正的挑战,在法规和标签方面,也是决策(实施,材料选择,建筑设计,康复。)。如今,我们在太阳辐射效应下缺乏冷却楼的动态热行为的参考模型。实际上,文献中开发的仿真模型以非常简化的方法表示,并且不能用于热舒适性的详细分析。本研究旨在减少知识缺口,解决诸如(i)的局限性,如(i)对真实天气条件的影响,(ii)可视化室内空气和表面冷却底的动态热行为相对于太阳黑子换档和(iii)将不同的太阳黑子形状预测为地理位置的函数。本文提出了一种3D模型,以评估在阿尔及利亚气候条件下加上地下罐的冷却楼的太阳黑子撞击。使用耦合的TRNSYS-FLUENT动态模拟来计算SUNSPOT。模拟是针对不同时期和天气条件运行的。结果表明,开发的模型可以提供冷却地板的热性能的真实模拟,考虑到太阳黑子换档。冷却楼层的事件太阳能热通量最多达到BeChar City的300 w / m(2),为奥兰市120 w / m(2)。在绒毛和照明区域之间的宽表面温度范围为13摄氏度。对于天气条件,绒毛区域的室内空气温度约为24℃,而照明区域的温度为28摄氏度,这可能导致房间中的温度异质性。

著录项

  • 来源
    《Solar Energy》 |2021年第6期|275-291|共17页
  • 作者单位

    COMUE Normandie Univ Lab Rech ESITC ESITC Caen 1 Rue Pierre & Marie Curie F-14610 Epron France;

    Univ Sci & Technol LMST Lab Mohamed BOUDIAF Oran Algeria;

    Univ Reims MATIM Lab Reims France;

    Univ Reims MATIM Lab Reims France;

    Univ Sci & Technol LMST Lab Mohamed BOUDIAF Oran Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cooling floor; Sunspot; Dynamic thermal behaviour; Coupling TRNSYS-FLUENT;

    机译:冷却地板;太阳黑子;动态热行为;耦合Trnsys-Fluent;
  • 入库时间 2022-08-19 02:29:14

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