Energy Performance Optimization in a Condensing Boiler

Diego Fernández-Cheliz, E. Velasco-Gómez, Juan Peral-Andrés, A. Tejero‐González
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引用次数: 2

Abstract

In Europe, primary energy consumption in buildings accounts for up to 25–40%, depending on the climate conditions. Space heating and Domestic Hot Water (DHW) contribute significantly to this energy consumption. Among the most common sources for heat generation in these appliances is natural gas. Condensing boilers can surpass the 100% energy performance over the lower heating value, if the operating conditions enable the water vapor in the exhaust gases to condensate. Consequently, optimizing the operating parameters of condensing boilers is necessary to decrease fuel consumption without hindering water heating needs. The present work presents an experimental approach to the operating parameters of a condensing boiler that works with natural gas. The aim is to develop a theoretical model that relates the energy performance to the water temperature set by the final user and the excess air set by the maintenance staff.
冷凝锅炉能源性能优化
在欧洲,根据气候条件的不同,建筑物的一次能源消耗高达25-40%。空间供暖和生活热水(DHW)对这一能源消耗贡献很大。在这些设备中,最常见的热源是天然气。如果运行条件允许废气中的水蒸气冷凝,冷凝锅炉可以在较低的热值上超过100%的能源性能。因此,优化冷凝锅炉的运行参数是必要的,以减少燃料消耗,而不妨碍水的加热需求。本文介绍了一种以天然气为燃料的冷凝锅炉运行参数的实验方法。目的是建立一个理论模型,将能源性能与最终用户设置的水温和维护人员设置的多余空气联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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