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Assessment of Thermal Comfort in a Building Heated with a Tiled Fireplace with the Function of Heat Accumulation

机译:用瓷砖壁炉加热的建筑物中热舒适评估,具有热累积功能

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Thermal comfort determines the state of satisfaction of a person or group of people with thermal conditions of the environment in which the person or group of persons is staying. This state of satisfaction depends on the balance between the amount of heat generated by the body's metabolism, and the dissipation of heat from the body to the surrounding environment. Due to differences in body build, metabolism, clothing etc. individuals may feel the parameters of the environment in which they are staying differently. Therefore, it is impossible to ensure the thermal comfort of all users of the room. However, properly designed building systems (heating, ventilation, air conditioning) allow for creating optimal thermal conditions that will evaluated positively by the vast majority of users. Due to the fact that currently we spend even 100% of the day indoors, the subject becomes extremely important. The article presents the evaluation of thermal comfort in rooms heated with a tiled fireplace with the function of accumulation of heat using the PMV (Predicted Mean Vote) and PPD (Predicted Percentage Dissatisfied) indices. It also presents the results of studies, on the quality of the micro-climate in such spaces. The system of heating premises described in the article is not a standard solution, but is now more and more commonly used as a supplement to the heating system, or even as a primary heating system in small objects, e.g. single-family houses, seasonal homes, etc. The studies comprised the measurements and analysis of typical internal micro-climate parameters: temperature, relative humidity and CO2 concentration. The results obtained did not raise any major reservations. In order to fully assess the conditions of use, the evaluation of thermal comfort of the analyzed rooms was made. Therefore, additionally the temperature of radiation of the surrounding areas, and the insulation of the users' clothing was determined. Based on the data obtained, the PPD and PMV indices were determined according to EN ISO 7730: 2005 Ergonomics of the thermal environment - Analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria [1]. The obtained PMV values did not fit within the limits of thermal comfort, and the percentage of people dissatisfied reached almost 20%.
机译:热舒适度决定了一个人或一群人的满足状态,其中有环境或一群人保持的环境的热情。这种满足状态取决于身体新陈代谢产生的热量之间的平衡,以及从身体到周围环境的热量耗散。由于身体构建,新陈代谢,服装等的差异可能会感受到它们留下不同的环境的参数。因此,不可能确保房间所有用户的热舒适性。然而,适当设计的建筑系统(加热,通风,空调)允许创造最佳的热条件,这些热条件将通过绝大多数用户提供积极评估。由于目前我们在室内度过100%的时间,因此受试者变得非常重要。本文介绍了使用PMV(预测平均投票)和PPD(预测百分比不满)指数的加热瓷砖加热的房间热舒适度的评估。它还提出了研究的研究结果,在这些空间中的微观气候的质量。本文中描述的加热房屋系统不是标准解决方案,但现在越来越常用为加热系统的补充剂,或者甚至作为小物体中的主要加热系统,例如,单家庭住宅,季节性房屋等研究包括典型内部微气候参数的测量和分析:温度,相对湿度和CO2浓度。获得的结果没有提出任何重大保留。为了完全评估使用条件,制造了分析室热舒适性的评估。因此,确定了周围区域的辐射温度,以及用户衣物的绝缘。基于所获得的数据,PPD和PMV指数根据EN ISO 7730:2005符合EN ISO 7730:2005,使用PMV和PPD指数的计算和局部热舒适性标准的分析测定和热舒适性的解释[1]。所获得的PMV值不适合热舒适度的限制,不满意的人的百分比达到近20%。

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