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Experimental study of the thermal-acoustic efficiency in a long turbulent diffusion-flame burner

机译:长湍流扩散火焰燃烧器热声效率的实验研究

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摘要

An acoustic source/propagation model is used to interpret measured noise spectra from a long turbulent burner. The acoustic model is based on the perturbation solution of the equations describing the unsteady one-dimensional flow of an inviscid ideal gas with a distributed heat source. The model assumes that the measured noise spectra are due uniquely to the unsteady component of combustion heat release. The model was applied to a long cylindrical hydrogen burner operating over a range of power levels between 4.5 kW and 22.3 kW. Acoustic impedances at the inlet to the burner and at the exit of the tube downstream of the burner were measured and are used as boundary conditions for the model. These measured impedances are also presented.
机译:声源/传播模型用于解释从长湍流燃烧器测得的噪声频谱。声学模型基于方程的摄动解,该方程描述了具有分布热源的不粘理想气体的非稳态一维流动。该模型假定测得的噪声频谱是由于燃烧放热的不稳定成分所致。该模型应用于长圆柱氢燃烧器,功率范围在4.5 kW和22.3 kW之间。测量了燃烧器入口处和燃烧器下游管子出口处的声阻抗,并将其用作模型的边界条件。还显示了这些测量的阻抗。

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    Mahan, J. R.;

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  • 年度 1983
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