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Soot volume fractions in volatile matter envelope flames of bituminous coal particles in air and oxy-fuel combustion

机译:空气和氧燃料燃烧中沥青质物质的沥青煤颗粒的烟雾体积分数

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This work calculated volume fractions of soot in volatile matter envelope flames which form around burning single particles of bituminous coal. Both conventional combustion in air and simulated oxy-fuel combustion, with oxygen mole fractions in the range of 20-40% in CO_2, were studied. Particles of 75-90 μm were injected in a bench-scale, transparent drop-tube furnace (DTF), at wall temperatures of 1400K. Upon ignition, optical pyrometry and high-speed photography were implemented to optically diagnose the burning particles. The method of Timothy et al[1] was applied to determine the instantaneous spatially-average soot volume fraction in these envelop flames. Results showed that soot shell forming around the particle was thicker and more luminous in air than the shell forming at the same O_2 concentration in CO_2. The soot volume fraction was decreased when N_2 in air was replaced by CO_2. Average soot volume fraction in the envelope flames in air was in the order of 7×10~(-5), whereas it was in the range 3.5×10~(-5) -5.0×10~(-5) in oxy-fuel atmospheres.
机译:这项工作计算出挥发物质包络火焰中烟灰的体积分数,其在燃烧的单个烟煤颗粒周围形成。研究了空气中的常规燃烧和模拟氧 - 燃料燃烧,在CO_2中具有20-40%的氧气级分的氧气级分。将75-90μm的颗粒以1400K的壁温度,透明滴管炉(DTF)注入到长凳上的透明滴管炉(DTF)中注射。在点火时,实现光学热测定和高速摄影以光学诊断燃烧的颗粒。施用蒂米托等人[1]的方法以确定这些包络火焰中的瞬时空平均烟灰体积分数。结果表明,在CO_2中相同O_2浓度的壳体形成,在空气中形成围绕颗粒的烟灰壳在壳体中较厚,更发光。当通过CO_2取代空气中的N_2时,烟灰体积分数降低。空气中的包络火焰中的平均烟灰体积分数为7×10〜(-5),而它在3.5×10〜(-5)-5.0×10〜(-5)的范围内 - 燃油氛围。

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