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Numerical simulation of cooling energy consumption in connection with thermostat operation mode and comfort requirements for the Athens buildings

机译:与雅典建筑的恒温器运行模式和舒适性要求相关的冷却能耗的数值模拟

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摘要

A model and a corresponding numerical procedure, based on the finite-difference method, have been developed for the prediction of buildings thermal behavior under the influence of all possible thermal loads and the "guidance" of cooling control system in conjunction with thermal comfort requirements. Using the developed procedure analyses have been conducted concerning the effects of thermostat operation mode and cooling power in terms of the time, on the total cooling energy consumption for the ideal space cooling, as well as for various usually encountered real cases, thus trying to find ways to reduce cooling energy consumption. The results lead to suggestions for energy savings up to 10%. Extensive comparisons between the ideal and various real cooling modes showed small differences in the 24-h cooling energy consumption. Because of the above finding, our detailed ideal cooling mode predictions gain considerable value and can be considered as a basis for comparison with real cases. They may also provide a good estimate of energy savings obtained if we decide to increase thermostat set point temperature. Therefore, as the extent of cooling energy saving is a priori known, one can decide if (and how much) it is worthy to increase thermostat set point temperature at the expense of thermal comfort. All results of the study, which refer to the Typical Athens Buildings during the typical Athens summer day, under the usual ranges of thermal loads, may be applicable to other regions with similar conditions.
机译:已经开发了基于有限差分法的模型和相应的数值程序,用于在所有可能的热负荷以及冷却控制系统的“指导”以及热舒适性要求的影响下预测建筑物的热行为。使用已开发的程序进行了有关恒温器运行模式和冷却功率随时间的变化,理想空间制冷以及各种通常遇到的实际情况对总制冷能耗的影响的分析,因此试图找到减少冷却能耗的方法。结果提出了节能高达10%的建议。理想制冷模式与各种实际制冷模式之间的广泛比较显示,24小时制冷能耗差异很小。由于以上发现,我们详细的理想冷却模式预测获得了可观的价值,可以作为与实际案例进行比较的基础。如果我们决定提高恒温器设定点温度,它们还可以提供一个很好的节能估算。因此,由于冷却节能的程度是先验已知的,因此可以决定是否(以多少为代价)以牺牲热舒适性为代价来提高恒温器设定点温度。该研究的所有结果均涉及典型雅典夏季白天在典型热负荷范围内的典型雅典建筑,可能适用于条件相似的其他地区。

著录项

  • 来源
    《Applied Energy》 |2011年第8期|p.2871-2884|共14页
  • 作者单位

    National Technical University of Athens, School of Mechanical Engineering, Thermal Department, Heroon Polytechniou 9, 157 73 Zografou, Athens, Greece;

    National Technical University of Athens, School of Mechanical Engineering, Thermal Department, Heroon Polytechniou 9, 157 73 Zografou, Athens, Greece;

    National Technical University of Athens, School of Mechanical Engineering, Thermal Department, Heroon Polytechniou 9, 157 73 Zografou, Athens, Greece;

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

    Cooling energy saving; Air-conditioning control; Thermostat operation; Thermal comfort; Athens buildings;

    机译:冷却节能;空调控制;温控器运行;热舒适度;雅典建筑;

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