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Algebraic Calculation Method of One-Dimensional Steady Compressible Gas Flow

Algebraic Calculation Method of One-Dimensional Steady Compressible Gas Flow
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摘要 This paper describes a new method of calculation of one-dimensional steady compressible gas flows in channels with possible heat and mass exchange through perforated sidewalls. The channel is divided into small elements of a finite size for which mass, energy and momentum conservation laws are written in the integral form, assuming linear distribution of the parameters along the length. As a result, the calculation is reduced to finding the roots of a quadratic algebraic equation, thus providing an alternative to numerical methods based on differential equations. The advantage of this method is its high tolerance to coarse discretization of the calculation area as well as its good applicability for transonic flow calculations. This paper describes a new method of calculation of one-dimensional steady compressible gas flows in channels with possible heat and mass exchange through perforated sidewalls. The channel is divided into small elements of a finite size for which mass, energy and momentum conservation laws are written in the integral form, assuming linear distribution of the parameters along the length. As a result, the calculation is reduced to finding the roots of a quadratic algebraic equation, thus providing an alternative to numerical methods based on differential equations. The advantage of this method is its high tolerance to coarse discretization of the calculation area as well as its good applicability for transonic flow calculations.
出处 《Open Journal of Fluid Dynamics》 2017年第1期83-88,共6页 流体动力学(英文)
关键词 Method of Calculation STEADY COMPRESSIBLE Flow Channel with Perforated Sidewalls Heat and Mass EXCHANGE FINITE Size Elements ONE-DIMENSIONAL Approach Method of Calculation Steady Compressible Flow Channel with Perforated Sidewalls Heat and Mass Exchange Finite Size Elements One-Dimensional Approach
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