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小尺度雙網格荷電霧化燃燒器熱損失特性研究
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國家自然科學基金項目(51776077,、51376066),、廣州市科技計劃項目(201707010071)和內燃機燃燒學國家重點實驗室開放基金項目(K2016-01)


Investigation on Heat Loss Characteristics of Small Scale Combustor with Double Meshes Using Electrospray Technique
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    摘要:

    以無水乙醇為燃料,,運用荷電霧化技術,,實驗研究了錐-射流噴霧模式下雙網格燃燒器的燃燒與熱損失特性。結果表明,,在當量比Φ為0.85~1.40區(qū)間內燃燒穩(wěn)定,,圓形片狀火焰附著于燃燒網格附近,火焰直徑與燃燒器內徑相當,?;鹧鏈囟取⑷紵示S當量比的增大先上升后下降,,在當量比Φ=1時分別達到最大值1197.38K,、93.26%。尾氣溫度隨當量比的增大而降低,,壁面熱損失隨當量比增大而增加,。壁面熱損失與燃料完全燃燒釋放熱量比例為27.25%~33.08%,其中輻射熱損失略高于對流熱損失,。燃燒器熱效率在當量比Φ≤1下可達69%,。雙網格燃燒器可實現小尺度條件下液體乙醇的良好噴霧,、蒸發(fā)與燃燒。

    Abstract:

    Electrospray technique is one of the reliable approaches to disperse liquid fuels at low flow rate. Heat loss has an important influence on the performance of micro/small scale combustors. Pure ethanol was chosen as liquid fuel, and electrospray technique was applied for fuel dispersion. The combustion and heat loss characteristics were experimentally studied in a small scale combustor with double meshes under the condition of cone-jet mode. The results showed that a round slice flame was anchored near the combustion mesh. Stable combustion was established in the equivalence ratio Φ range of 0.85~1.40. The diameter of the flame was near to the inner diameter of the combustor. The distance between combustion mesh and flame changed with equivalence ratios, which can be seen from the temperature distribution. The larger the equivalence ratio was, the shorter the distance was. Flame temperature and combustion efficiency were all increased firstly, and then decreased as the increase of equivalence ratios. When Φ=1, the highest flame temperature was up to 1197.38K, and the highest combustion efficiency was up to 93.26%. The exhausted gas temperature was decreased and wall heat losses were increased with the increase of equivalence ratio Φ. The exhausted gas temperature was influenced by the distance between combustion mesh and flame. Wall heat losses accounted for 27.25%~33.08% of total heat based on complete combustion of input fuel. Radiation heat loss accounted for about 56% of wall heat losses. Under the condition of Φ≤1, the thermal efficiency of the combustor was near to 69% and then decreased as the increase of Φ. The present combustor with double meshes can realize effective atomization, evaporation and combustion of liquid ethanol at small scale.

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甘云華,陳小文,李海鴿.小尺度雙網格荷電霧化燃燒器熱損失特性研究[J].農業(yè)機械學報,2018,49(1):375-380. GAN Yunhua, CHEN Xiaowen, LI Haige. Investigation on Heat Loss Characteristics of Small Scale Combustor with Double Meshes Using Electrospray Technique[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(1):375-380.

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  • 收稿日期:2017-03-14
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  • 在線發(fā)布日期: 2018-01-10
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