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首页> 外文期刊>Science and Technology for the Built Environment >Low-temperature heating in existing Swedish multi-family houses-An assessment of the significance of radiator design and geometry
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Low-temperature heating in existing Swedish multi-family houses-An assessment of the significance of radiator design and geometry

机译:现有瑞典多家庭房屋的低温加热 - 评估散热器设计和几何的意义

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摘要

The current study evaluates the impacts of radiator designs and geometries. The aim was to map the thermal efficiency and performance differences of studied radiator types. A typical Swedish low-rise, multi-family house was selected to present the analysis. A Swedish climate was employed to evaluate the applicability. The on-site measurements, analytical model, and real-life performance data from radiator manufacturing were applied for the modeling work. Radiator Type 21 (1.2 x 0.4m) showed the highest exergy efficiency; Type 11 (1.2 x 0.45m), the lowest. There is no evidence that Type 22 (adding more convector plate) has a higher thermal efficiency than Type 21, from an engineering perspective, within the climate range of -20 degrees C to 15 degrees C. Baseboard radiators showed a 34% higher exergy performance than the most efficient conventional radiator, with the same surface area, at mean outdoor temperatures during an average heating season in Sweden (-1.3 degrees C). The results also suggest that Type 21 would have higher efficiency than Type 11 during 50% time of the heating season, in severe climate conditions. In the climate of Stockholm, this efficiency advantage was 20%. For the mild climate, Type 11 and Type 21 performed almost the same over the entire heating season.
机译:目前的研究评估了散热器设计和几何形状的影响。目的是映射研究的散热器类型的热效率和性能差异。选择典型的瑞典低层,多户住宅被选为分析。瑞典气候受雇于评估适用性。从散热器制造的现场测量,分析模型和现实寿命性能数据应用于建模工作。散热器21(1.2×0.4m)显示出最高的高效率; 11型(1.2 x 0.45米),最低。没有证据表明,22型(添加更多对流板)具有比21型更高的热效率,从工程角度来看,在-20°C至15摄氏度的气候范围内。踢踏板散热器显示出34%的高度表现而不是最有效的传统散热器,在瑞典的平均加热季节(-1.3℃)的平均加热季节中的平均户外温度。结果还表明,在严重气候条件下,21型比在加热季节的50%型时间内具有更高的效率。在斯德哥尔摩的气氛中,这种效率优势为20%。对于温和的气候,11型和21型在整个加热季节几乎相同。

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    KTH Royal Inst Technol Sch Architectural &

    Civil Engn Div Fluid &

    Climate Technol Brinellvagen 23 S-10044 Stockholm Sweden;

    KTH Royal Inst Technol Sch Architectural &

    Civil Engn Div Fluid &

    Climate Technol Brinellvagen 23 S-10044 Stockholm Sweden;

    KTH Royal Inst Technol Sch Architectural &

    Civil Engn Div Fluid &

    Climate Technol Brinellvagen 23 S-10044 Stockholm Sweden;

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  • 正文语种 eng
  • 中图分类 建筑基础科学;
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