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Some fundamental aspects of the discharge coefficients of cylinder porting and ducting restrictions

机译:圆柱体移植缸排出系数的一些基本方面和管道限制

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This paper reports on the experimental evaluation of the coefficient of discharge of ports in the cylinder wall of a two-stroke engine and of restrictions within engine ducting. required to know such discharge coefficients, as a function of the area of the restriction and the pressure ratio across it, so that in the mathematical modeling process at each juncture during the open cycle, accuracy can be obtained for the mass flow rates of gases, the magnitude of pressure waves created, and the effect on the internal engine thermodynamics. The discharge coefficients, C_d, are required for both inflow and outflow, i.e., in both directions, at all such cylinder apertures or ducting restrictions. A fundamental experimental study is conducted of the effect of size of the engine ducting on the discharge coefficient of the cylinder porting aperture and it is found to have no significant influence. The general applicability of this conclusion in design and simulation practice is debated. A study of the discharge coefficients of restrictions or throttles within engine ducting is carried out and the ensuing map is determined to be significantly dissimilar in profile to that of all published data on engine porting or valving.
机译:本文报告了双冲程发动机气缸壁中端口排放系数的实验评价,以及发动机管道内的限制。需要了解这种放电系数,作为限制区域的函数和其压力比,从而在每个接合过程中的数学建模过程中,可以获得气体的质量流量的精度,产生压力波的大小,以及对内部发动机热力学的影响。排气系数C_D,即流入和流出,即在两个方向上,在所有这种气缸孔或管道限制中都是所需的。基本实验研究是对发动机管道尺寸对汽缸孔的放电系数的影响的影响,并且发现它没有显着的影响。这一结论在设计和模拟实践中的一般适用性是讨论的。对发动机管道内的限制或节流的放电系数的研究是执行的,并且被确定的地图在轮廓中显着不相似地不同于发动机移植或阀门上的所有公开数据。

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