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首页> 外文期刊>Journal of Asian architecture and building engineering >Study on Statistical Prediction and Design Method for Indoor Thermal Environment
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Study on Statistical Prediction and Design Method for Indoor Thermal Environment

机译:室内热环境统计预测与设计方法研究

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摘要

The indoor thermal environment is affected by many heat factors such as occupants′ activities and outdoor climate changes. Because each of them varies asynchronously, the heat factors′ variation shows a nonsingle degree of freedom overall. Moreover, the heat factors′ impact on space is not uniform. Therefore, there always exist spatial distributions and temporal variations. In practice, the number of degrees of freedom of an air-conditioning system is usually limited and less than that of the object zone. The control performance of an air-conditioning system designed under a perfect mixing method cannot be satisfactory because the spatial distribution is neglected. For energy conservation and thermal comfort improvement, it is necessary to propose an air-conditioning system design method which can positively use the spatial distribution and temporal variation of the indoor thermal environment.In this study, methods for indoor temperature fluctuation analysis and optimization of air-conditioner sensor location are proposed. To represent the temperature field structure, an index called CRI is integrated. With this method, the spatial distribution and temporal variation can be calculated immediately and analyzed statistically; furthermore, the indoor temperature and outdoor climate′s correlation can be concisely visualized. A case study is conducted to verify the validity of this method.
机译:室内热环境受许多热因素的影响,例如乘员活动和室外气候变化。因为它们每个都是异步变化的,所以热因子的变化总体上显示出非单一的自由度。而且,热因素对空间的影响也不均匀。因此,总是存在空间分布和时间变化。实际上,空调系统的自由度数通常是有限的,并且小于目标区域的自由度数。在理想的混合方式下设计的空调系统的控制性能不能令人满意,因为忽略了空间分布。为了节约能源和提高热舒适性,有必要提出一种能够积极利用室内热环境的空间分布和时间变化的空调系统设计方法。提出了空调传感器的位置。为了表示温度场结构,集成了一个称为CRI的索引。使用这种方法,可以立即计算空间分布和时间变化并进行统计分析;此外,室内温度和室外气候的相关性可以清晰地可视化。进行了案例研究,验证了该方法的有效性。

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