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High efficiency heat-recirculating domestic gas burners

机译:高效热循环家用燃气燃烧器

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摘要

Existing designs of most conventional domestic burners (CB) have typically relied on open combustion flame, where a large amount of energy loss with the flue gas arises, resulting in relatively low thermal efficiency (<30%). Against this background, a novel semi-confined porous radiant recirculated burner (PRRB) concept based on heat-recirculating combustion using the porous medium technology was developed for energy savings in domestic use and in the small-scale food processing industry. Performance of the new burner using the same ring burners as those in the CB, i.e. the PRRB(CB) were evaluated by comparing thermal efficiencies and the combustion characteristics with those of the conventional one (CB). Operating parameters such as heat input, flow type of the ring burners (conventional radial flow (CB) or swirling central flow (SB)) were clarified. The proposed PRRB(CB) is very effective in establishing a heat-recirculation mechanism from the hot exhaust gas to the combustion air, resulting in efficient combustion air preheating with maximum combustion air temperature of 300 degreesC. Thermal efficiency of the proposed PRRB(CB) is increased to about 12% higher than that of the conventional one (CB). Further improvement in thermal efficiency of the burner can be realized by combining the PRRB with the swirling central flame ring burner (SB), i.e. the PRRB(SB), yielding a maximum thermal efficiency of about 60% and, thus, energy saving of about 50% in average over the operating range. The proposed PRRB(SB) provides not only high thermal efficiency and considerable improvement in energy saving but also environmentally compatible emissions. With the model proposed, the calculated thermal efficiencies of the PRRB(SB) can be predicted and agree well with the experimental ones. (C) 2002 Elsevier Science Inc. All rights reserved. [References: 26]
机译:大多数常规家用燃烧器(CB)的现有设计通常都依赖于明火燃烧,在明火燃烧中,烟道气会产生大量能量损失,从而导致相对较低的热效率(<30%)。在这种背景下,基于多孔介质技术的基于热循环燃烧的新型半封闭多孔辐射循环燃烧器(PRRB)概念被开发出来,以节省家庭使用和小型食品加工业的能耗。使用与CB中相同的环形燃烧器,即PRRB(CB),通过比较热效率和燃烧特性与传统燃烧器(CB)的性能来评估新燃烧器的性能。明确了操作参数,例如热量输入,环形燃烧器的流量类型(常规径向流量(CB)或旋转中心流量(SB))。所提出的PRRB(CB)在建立从热废气到燃烧空气的热再循环机制方面非常有效,从而以最高300摄氏度的最高燃烧空气温度对燃烧空气进行有效的预热。提出的PRRB(CB)的热效率比传统的(CB)的热效率提高了约12%。通过将PRRB与涡流式中央火焰环燃烧器(SB)(即PRRB(SB))结合使用,可以进一步提高燃烧器的热效率,从而产生约60%的最大热效率,从而节省约5%的能源。在整个工作范围内平均50%。拟议的PRRB(SB)不仅提供了高热效率和节能方面的显着改善,而且还提供了与环境相容的排放物。利用所提出的模型,可以预测PRRB(SB)的计算出的热效率,并与实验值相吻合。 (C)2002 Elsevier Science Inc.保留所有权利。 [参考:26]

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