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Reducing annual energy consumption by proper selection of HVAC equipment

机译:通过HVAC设备选择适当减少每年的能源消耗

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Many of the procedures used by HVAC designers were intended primarily at providing a workable rather than optimum energy systems. It was a common practice to include large safety factors to ensure proper operation under all conditions. To the designer, the extra cost of the oversized equipment was justified. What was not understood was the heavy penalty on annual energy consumption this procedure produces. The purpose of this paper is to present quantitative examples of how over sizing augments annual energy consumption. As an example, a simple heating system employing a boiler is examined. The boiler is quoted as having an efficiency of 80%. What is often not understood is that this efficiency only applies to the steady-state operation of the boiler. The annual efficiency in actual usage will be considerably less. This annual efficiency can be found by using the part-load efficiency of the boiler and the Bin method of annual energy estimation. For the above boiler, the annual efficiency was found to be 44%. If the boiler was oversized by 100%, the annual efficiency drops to 38%. The above results can be extended to effect substantial improvements in energy consumption. A single large boiler can be replaced by two smaller boilers whose combined capacity meet the design loads. By using this arrangement, the annual system efficiency can be increased to 64%. The added cost of the extra equipment can be quickly recovered by the large savings in operating costs.
机译:HVAC设计人员使用的许多程序主要旨在提供可行的能源系统,而不是最佳的能源系统。包括较大的安全系数以确保在所有条件下均能正常运行是一种惯例。对于设计师来说,超大型设备的额外成本是合理的。还不了解的是,此程序每年会消耗大量能源。本文的目的是提供定量示例,说明过大的尺寸如何增加年度能耗。例如,研究了一种采用锅炉的简单加热系统。引用该锅炉的效率为80%。通常不了解的是,这种效率仅适用于锅炉的稳态运行。实际使用中的年效率将大大降低。通过使用锅炉的部分负荷效率和年度能源估算的Bin方法可以找到该年效率。对于上述锅炉,发现年效率为44%。如果锅炉超大型100%,年效率将下降到38%。可以扩展上述结果,以实现能源消耗的显着改善。一个大型锅炉可以用两个容量合计满足设计负荷的小型锅炉代替。通过使用这种安排,年度系统效率可以提高到64%。可以通过大量节省运营成本来迅速收回额外设备的额外成本。

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