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Thermal performance of combined solar and pellet heating systems

机译:太阳能和颗粒加热系统的热性能

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Various pellet heating systems are marketed in Sweden, some of them in combination with a solar heating system. Several types of pellet heating units are available and can be used for a combined system. This article compares four typical combined solar and pellet heating systems. System 1 and 2 with a pellet stove, system 3 with a store integrated pellet burner and system 4 with a pellet boiler. The often lower efficiency of pellet heaters compared to oil or gas heaters increases the final energy demand. Consequently, heat losses of the various systems have been studied. The systems have been modeled in TRNSYS and simulated with parameters identified from measurements. For almost all systems the flue gas losses are the main heat losses except for system 3 where store heat losses prevail. Relevant are also the heat losses of the burner and the boiler to the ambient. Significant leakage losses are noticed for system 3 and 4. For buildings with an open internal design system 1 is the most efficient solution. Other buildings should preferably apply system 2 or 3. The right choice of the system depends also on whether the heater is placed inside or outside of the heated area. Unlike the expectations and results from other studies, the operation of the pellet heaters with modulating combustion power is not necessarily improving the performance. A large potential for system optimisation exists for all studied systems, which when applied could alter the relative merits of the different system types.
机译:瑞典有各种颗粒加热系统,其中一些与太阳能加热系统结合使用。颗粒加热装置有几种类型,可用于组合系统。本文比较了四种典型的组合式太阳能和颗粒加热系统。带颗粒炉的系统1和2,带储藏式颗粒燃烧器的系统3和带颗粒锅炉的系统4。与燃油或燃气加热器相比,颗粒加热器的效率通常较低,这增加了最终的能源需求。因此,已经研究了各种系统的热损失。该系统已在TRNSYS中建模,并使用根据测量确定的参数进行了仿真。对于几乎所有系统,烟道气损耗是主要的热损耗,但系统3中以存储热量为主。燃烧器和锅炉向周围环境的热损失也与此有关。对于系统3和4,注意到了明显的泄漏损失。对于具有开放内部设计系统的建筑物,1是最有效的解决方案。其他建筑物最好应采用系统2或3。系统的正确选择还取决于加热器是放置在加热区域的内部还是外部。与其他研究的期望和结果不同,在调节燃烧功率的情况下,颗粒加热器的运行不一定会改善性能。所有研究的系统都有很大的系统优化潜力,当应用这些系统时,可能会改变不同系统类型的相对优点。

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