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首页> 外文期刊>ACS Omega >Effect of Thermal Storage on the Emissions and Efficiency Performance of a Wood-Pellet-Fired Residential Boiler
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Effect of Thermal Storage on the Emissions and Efficiency Performance of a Wood-Pellet-Fired Residential Boiler

机译:热储存对木颗粒燃烧住宅锅炉排放和效率性能的影响

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Wood pellet boilers for residential heating applications offer the promise of low emissions, high efficiency, and automatic operation. However, when operated in the field, these units operate often at very low loads causing them to cycle. In this study, the performance of a 25 kW modern pellet boiler under emulated field conditions and fixed nominal loads of 15 and 100% has been studied in a lab—with and without a buffer tank. A dilution tunnel approach was used for the measurement of particulate emissions, in accordance with US certification testing requirements under EPA Methods 28 WHH and 28 WHH PTS. Results show that increasing the amount of thermal storage used decreases cycling rates leading to decreased emissions and increased efficiency. Without thermal storage, integrated efficiency over a 15% load test period was 57%, compared to 74% when thermal storage was used. Particulate emissions were 180 and 64 mg/MJ for the 15% load case without and with thermal storage, respectively.
机译:用于住宅供热应用的木颗粒锅炉提供低排放量,高效率和自动操作的承诺。然而,当在该领域操作时,这些单元经常在非常低的负载下操作,导致它们循环。在本研究中,在实验室条件下,在仿真场条件下的25 kW现代颗粒锅炉的性能已经在实验室和15%和100%的标称载体下进行了研究,其中没有缓冲罐。稀释隧道方法用于测量颗粒排放,按照美国的认证测试要求28 WHH和28 WHH PTS。结果表明,增加了使用的热储存量降低了循环速率,导致排放减少和提高效率。如果没有热存储,在使用热量储存时,15%负荷测试期的综合效率为57%。对于15%负载箱,分别没有和热存储,颗粒排放为180和64 mg / mJ。

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