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SOOT REDUCTION UNDER DC ELECTRIC FIELDS IN COUNTERFLOW NON-PREMIXED LAMINAR ETHYLENE FLAMES

机译:直流非逆流层流乙烯火焰烟尘还原

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The effects of DC electric fields on non-premixed ethylene flames in a counterflow burner were studied experimentally with a focus on the reduction of soot particles. The experiment was conducted by connecting a high voltage terminal and a ground terminal to a lower (fuel) and upper (oxidizer) nozzle, respectively. We applied direct current (DC) potentials in a range of -5 kV < V_(dc) < 5 kV. Uniform electric fields were then generated in the gap between the two nozzles. The experimental conditions were selected to cover both soot formation (SF) and soot formation oxidation (SFO) flames. The flames subjected to the negative electric fields moved toward the fuel nozzle because of an ionic wind due to the Lorentz force acting on the positive ions in the flames. In addition, the yellow luminosity significantly decreased, indicating changes in the sooting characteristics. To analyze the sooting characteristics under the electric fields, planar laser induced incandescence (PLII) and fluorescence (PLIF) techniques were used to visualize the soot, polycyclic aromatic hydrocarbons (PAHs), and OH radicals. The sooting limits in terms of the fuel and oxygen mole fractions were measured. No substantial soot formation due to the effects of the DC electric fields for the tested range of voltages and reactmit mole fractions could be identified. The detailed flame behaviors and sooting characteristics under the DC electric fields are discussed.
机译:实验研究了直流电场对逆流燃烧器中非预混乙烯火焰的影响,重点是减少烟灰颗粒。通过将高压端子和接地端子分别连接到下部(燃料)喷嘴和上部(氧化剂)喷嘴进行实验。我们施加的直流(DC)电位范围为-5 kV <V_(dc)<5 kV。然后在两个喷嘴之间的间隙中产生均匀的电场。选择实验条件以覆盖烟尘形成(SF)和烟尘形成氧化(SFO)火焰。由于洛伦兹力作用在火焰中的正离子上,因此离子风使承受负电场的火焰移向燃料喷嘴。另外,黄色发光度显着降低,表明烟ing特性发生变化。为了分析电场下的烟ot特性,使用了平面激光诱导的白炽灯(PLII)和荧光(PLIF)技术来可视化烟,、多环芳烃(PAHs)和OH自由基。测量了根据燃料和氧气摩尔分数的烟ing极限。由于在电压和反应物摩尔分数的测试范围内直流电场的影响,没有明显的烟尘形成。讨论了直流电场下的详细火焰行为和烟so特性。

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