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Heating energy performance and part load ratio characteristics of boiler staging in an office building

机译:办公大楼锅炉的热能性能和部分负荷比特性

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Commercial buildings account for significant portions of the total building energy in South Korea and thus a variety of research on the boiler operation related to heating energy in office buildings has been carried out thus far. However, most of the researches have been conducted on the boiler itself, i.e., the part load ratio characteristics and the corresponding gas energy consumption patterns are not analyzed in the existing studies. In this study, the part load ratio and the operating characteristics of gas boiler have been analyzed within an office building equipped with the conventional variable air volume system. In addition, the gas consumption among different boiler staging schemes has been comparatively analyzed. As a result, significant portions of total operating hours, heating load and energy consumption has been found to be in a part load ratio range of 0 through 40% and thus energy consumption is significantly affected by boiler efficiency at low part load conditions. This suggests that boiler operation at the part load is an important factor in commercial buildings. In addition, utilizing sequential boiler staging scheme can save a gas usage of about 7%. For annual heating energy saving, applying the sequential control boiler with a 3:7 proportion staging is considered to be the optimal control algorithm for maximum efficiency of boilers.
机译:在韩国,商业建筑占建筑总能源的很大一部分,因此,迄今为止,已经对与办公建筑中的热能相关的锅炉运行进行了各种研究。但是,大多数研究是针对锅炉本身进行的,即,在现有研究中没有分析部分负荷率特性和相应的气体能耗模式。在这项研究中,在装有常规可变风量系统的办公大楼内分析了燃气锅炉的部分负荷比和运行特性。此外,还对不同锅炉分级方案之间的燃气消耗进行了比较分析。结果,发现总工作时间,热负荷和能量消耗的很大一部分处于0至40%的部分负荷比率范围内,因此在低部分负荷条件下,锅炉效率显着影响了能量消耗。这表明在部分负荷下锅炉运行是商业建筑中的重要因素。此外,采用顺序锅炉分级方案可以节省约7%的气体使用量。为了每年节省供暖能源,采用比例控制为3:7的顺序控制锅炉被认为是锅炉最大效率的最佳控制算法。

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