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Influence of installation conditions on heating bodies thermal output: preliminary experimental results

机译:安装条件对加热体热输出的影响:初步实验结果

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Heating bodies are thermodynamic systems whose heat output is strongly dependent on boundary conditions and in about a century several attempts have been made for its experimental determination. To this aim, at the beginning of 60s, in Europe different national standards were adopted (e.g. in 1967 in Italy the UNI 6514/1967). At European level, the EN 442-1:2014 and EN 442-2:2014 allows the heating body heat output estimation with an expanded uncertainty lower than 1% and they are now accepted in various international markets. The EN 442 also allows heat output calculation in operating conditions different from standard ones by employing theoretical-experimental correlations that, by their nature, are not able to include any possible actual operating condition. In fact, in actual operating conditions the heating body heat output depends on several factors, among which: i) installation position with respect to the wall and the floor; ii) presence grid/shelf/niche or an obstruction caused by curtains on the heating body; iii) thermo-fluid-dynamic condition variations (inlet flow rate and temperature); iv) hydraulic connections. Radiators represent the most spread heating body (installed since the end of '800) and in the last decades different radiators typologies have been proposed on the market, characterized by different materials, sizes, shapes, etc. In the present paper the authors present the preliminary result of an experimental campaign on field for the heat output measurement of different radiators typologies (cast iron, aluminum) as a function of different installation and operating conditions. The influence on the heating body performance and the associate technical-economical consequences in terms of heat cost allocation accuracy have been investigated.
机译:加热体是热力学系统,其热输出强烈依赖边界条件,并且在大约一个世纪中,已经进行了几次尝试,以实验确定。为此目的,在60年代初,在欧洲在欧洲采用了不同的国家标准(例如,1967年在意大利UNI 6514/1967)。在欧洲一级,ZH 442-1:2014和EN 442-2:2014允许加热体热输出估计,扩大不确定性低于1%,现在在各种国际市场中被接受。 EN 442还允许通过采用其性质的理论实验相关性而无法包括任何可能的实际操作条件的理论实验相关性的操作条件下的热输出计算。实际上,在实际操作条件下,加热体热输出取决于几个因素,其中:i)相对于墙壁和地板的安装位置; ii)存在网格/搁板/利基或由加热体上窗帘引起的阻塞; iii)热流体动态条件变化(入口流速和温度); iv)液压连接。散热器代表最传播加热体(因为“800端安装)和在过去几十年不同散热器类型学已经提出了在市场上,其特征在于由不同的材料,尺寸,形状等。在本文中作者呈现不同散热器类型(铸铁,铝)热输出测量的实验运动的实验运动初步结果作为不同的安装和操作条件的函数。研究了对热成本分配准确性方面对加热体性能和助理技术经济后果的影响。

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