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Effect of limestone addition on radiative heat transfer during co-firing of high-sulfur content lignite with biomass in fluidized bed combustors

机译:流化床燃烧器中添加石灰石对高硫褐煤与生物质共烧过程中辐射传热的影响

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In this study, influence of limestone addition on radiative heat transfer during co-firing of high-sulfur content lignite with olive residue in the freeboard of 300 kW(t) Atmospheric Bubbling Fluidized Bed Combustor (ABFBC) is investigated by using an in-house developed radiation code based on Method of Lines (MOL) solution of Discrete Ordinates Method (DOM). The freeboard is treated as a 3D rectangular enclosure containing gray, absorbing, emitting gas with absorbing, emitting, anisotropically scattering particles surrounded by black/gray diffuse walls. Radiative properties of combustion gases and particles are evaluated by using Leckner's correlations and Mie theory, respectively. Input data required for the model are provided from four combustion tests which were previously carried out sequentially for lignite only, lignite with limestone addition followed by 30 and 50wt % shares of olive residue in the fuel mixture for the same Ca/S ratio. The results show that addition of limestone affects the radiative properties of the particles in the freeboard through the change of particle size distribution and load rather than optical properties and decreases the radiative wall heat fluxes along the freeboard. On the other hand, co-firing with biomass compensates this decrease as less limestone is utilized in almost direct proportion to the coal replacement.
机译:在这项研究中,通过内部研究,研究了在300 kW(t)大气鼓泡流化床燃烧器(ABFBC)中,高硫含量褐煤与橄榄渣共烧过程中添加石灰石对辐射传热的影响。开发了基于离散纵坐标法(DOM)的线法(MOL)解决方案的辐射代码。干舷被视为3D矩形外壳,其中包含灰色,吸收性,发射性气体,以及被黑/灰色扩散壁包围的吸收性,发射性,各向异性散射粒子。燃烧气体和颗粒的辐射特性分别使用Leckner关联和Mie理论进行评估。该模型所需的输入数据是由四个燃烧试验提供的,这些燃烧试验以前仅对褐煤,添加石灰石的褐煤依次进行,然后以相同的Ca / S比在混合燃料中占30%和50wt%的橄榄渣。结果表明,石灰石的添加通过改变粒径分布和载荷而不是光学性能影响干舷颗粒的辐射性能,并降低了沿干舷的辐射壁热通量。另一方面,与生物质共烧可弥补这一减少,因为减少了几乎与煤炭替代品成正比的石灰石。

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