首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Evaluation of a new system combining wood-burning stove, flue gas heat exchanger and mechanical ventilation with heat recovery in highly-insulated houses
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Evaluation of a new system combining wood-burning stove, flue gas heat exchanger and mechanical ventilation with heat recovery in highly-insulated houses

机译:高度绝缘房屋燃烧炉,烟气热交换器和机械通风结合新系统的评价

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摘要

The performance of an innovative flue gas heat exchanger (FGHE) located at the exit of a wood-burning stove (log or pellet) to pre-heat ventilation air has been assessed for highly insulated detached houses. For this purpose, transient thermal simulations (TRNSYS + TRNFlow) were carried out on a Norwegian house typology (passive house standard NS3700) and a French house typology (building regulation RT2012) - both equipped with mechanical ventilation systems with heat recovery (MVHR). Seven different climates were considered ranging from mixed (Nice, France) to subarctic conditions (Karasjok, Norway) in order to evaluate the impact of the system in terms of energy use for space-heating and thermal comfort for a broad range of operating conditions. The tested system allowed an improvement of the thermal comfort in the bedrooms furthest away from the stove: up to 7.6 degrees C of the 5th percentile of the operative temperature (Top 5%) for France and up to 9.5 degrees C for Norway, compared to the houses without the system. Furthermore, energy savings of up to 19% over the spaceheating season were reported, depending on the type of wood-burning stove (i.e. log or pellet) and control used during operation.
机译:已经评估了位于木材燃烧炉(原木或颗粒)出口的创新烟气热交换器(FGHE)的性能,用于对预热通风空气进行高度绝缘的独立式房屋。为此目的,在挪威房屋类型(无源房屋标准NS3700)和法国房屋类型(建筑物规则RT2012)上进行了瞬态热模拟(TRNSYS + TRNFLOW) - 两者都配备有带有热回收(MVHR)的机械通风系统。七种不同的气候被认为是从混合(漂亮的,法国)到亚曲率条件(Karasjok,挪威),以便在能量用途方面评估系统的影响,以及在广泛的操作条件下进行空间加热和热舒适度。经过测试的系统允许改善远离炉子的卧室的热舒适度:与法国的操作温度(5%)的5百分位数高达7.6摄氏度,与挪威最多9.5摄氏度相比,相比没有系统的房屋。此外,报告了高达19%的节能在空间季节,取决于在运行期间使用的木材燃烧炉(即log或颗粒)和控制的类型。

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