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首页> 外文期刊>Journal of Mechanical Engineering >Entropy Generation and Exergy Efficiency in Adiabatic Mixing of Nitrogen and Oxygen Streams of Different Temperatures and Environmental Pressures
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Entropy Generation and Exergy Efficiency in Adiabatic Mixing of Nitrogen and Oxygen Streams of Different Temperatures and Environmental Pressures

机译:不同温度和环境压力下氮,氧流绝热混合过程中的熵产生和(火用)效率

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摘要

The paper presents a non-dimensional model of entropy generation and exergy efficiency in the adiabatic mixing of a nitrogen stream and oxygen stream with different temperatures and environmental pressure. The resulting mixture has the same, i.e. environmental, pressure. Non-dimensional variables in the model represent the ratio of thermodynamic stream temperatures u, the ratio between the thermodynamic temperature of one stream and the environmental temperature u_1, and the mole fraction y_1 of one of the streams. The model comprises irreversibility due to different temperatures of streams because of the mixing of different gases, while exergies of streams also comprise their mole fractions in the ambient air (atmosphere). In this respect, the model takes the standard values of mole fractions of oxygen and nitrogen of y_(O2) = 0.21 and y_(N2) = 0.79. The values of stream mole fractions at which maximum values of entropy generation and minimum values of exergy efficiencies occur are given. Calculation results are given in respective diagrams.
机译:本文提出了在不同温度和环境压力下,氮气和氧气流绝热混合过程中,熵产生和(火用)效率的无量纲模型。所得混合物具有相同的压力,即环境压力。模型中的无量纲变量表示热力学流温度u的比率,一条流的热力学温度与环境温度u_1之间的比率以及其中一条流的摩尔分数y_1。该模型包含不可逆性,这是由于不同气体的混合导致流温度不同而引起的,而流的能量还包括它们在环境空气(大气)中的摩尔分数。在这方面,该模型采用y_(O2)= 0.21和y_(N2)= 0.79的氧和氮摩尔分数的标准值。给出了产生熵的最大值和火用效率的最小值时的物流摩尔分数的值。计算结果在各图中给出。

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