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Performance of primary holes in presence of dilution and cooling holes in a reverse-flow combustor model

机译:逆流燃烧室模型中存在稀释孔和冷却孔时的主要孔的性能

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Experimental investigations on discharge coefficient of row of primary holes of a reverse-flow gas turbine combustor have been carried out using a plane annulus model. The studies have been carried out in a wide range of Reynolds number (0.1 X 10~4 to 1.65 X 10~4) on the individual row of primary holes as well as in combination with the other rows of liner holes. It is observed that presence of other rows of liner holes significantly affect static pressure distribution at the primary holes. Static pressure at all the four rows of liner holes, when operating together, increased up to a magnitude till R_e=1.35 X 10~4 and decreased thereafter with further increase in R_e. The values of discharge coefficient of row of primary holes when operating alone remained in the range of 0.74-0.69. These magnitudes reduced in the presence of individual row of dilution (by approx=18 percent) and cooling holes (by approx=6 percent) while they improved to the extent of approx=0.77 to 0.72 (K=1510 to 1750) when all the four rows operating together.
机译:利用平面环空模型对逆流式燃气轮机燃烧室的一次孔排的排放系数进行了实验研究。已经在单独的一排初级孔以及与其他排衬管孔组合的广泛雷诺数(0.1 X 10〜4至1.65 X 10〜4)下进行了研究。观察到存在其他排衬管孔会显着影响主孔处的静压分布。当一起工作时,所有四排衬里孔处的静压都增加到R_e = 1.35 X 10〜4的大小,此后随着R_e的进一步增加而减小。当单独操作时,一次孔排的排放系数的值保持在0.74-0.69的范围内。当存在单独的稀释液行(降低约18%)和冷却孔(降低约6%)时,这些量值降低,而当所有这些条件都降低时,它们提高到约0.77到0.72(K = 1510到1750)的程度。四排一起运行。

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