• CN:11-2187/TH
  • ISSN:0577-6686

›› 1963, Vol. 11 ›› Issue (2): 12-20.

• 论文 • 上一篇    下一篇

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烃与空气燃烧产物热力性质的分析

王伯年   

  1. 中国科学院
  • 发布日期:1963-03-01

THE ANALYSES of THERMODYNAMIC PROPERTIES OF PRODUCTS OF COMBUSTION OF HYDROCARBONS WITH AIR

Wang Bernien   

  1. Academia Sinica
  • Published:1963-03-01

摘要: 本文证明任意碳氢燃料CxHy与空气的燃烧产物的热力性质(t≤1500℃,β≤1),可在=按任意二种基准燃料的已知燃气性质简捷地计算出来。给出了以C和H2作为基准燃料以计算(CH2)n的燃气热力性质的一些实例。用(CH2)n的燃气性质(β=1)代替C和H2的燃气性质所引进的误差是:自1500℃等熵膨胀到相同的温度状态时(温差约为1500°~1000℃),焓降的相对误差为1%~2%,终点压力的相对误差为4%~14%;自1500℃等熵膨胀到相同的压力时(压比约为1000~40),焓降相对误差约在1%以下,终点温度的相对误差在1%~4%之间。在上述条件下,任意燃料如用(CH2)n的燃气性质作为其燃气性质,所产生的误差比以上的误差值为小。

关键词: 工作装置, 机构尺寸, 挖掘性能, 液压挖掘机

Abstract: From an analyses of the composition of products of combustion of arbitrary hydrocarbon fuel CxHy with air (t≤1500℃,β≤1), author demonstrated that, the thermodynamic properties of products of combustion of arbitrary hydrocarbon fuel with air can computed in term of known thermodynamic properties of any two essential hydrocarbons with airy computing equations are presented. Some examples of using C and H2 as the essentical hydrocarbons to compute the thermodynamic properties of products of combustion of (CH2)n with air are given: From such calculations it is shown that, when isentropically expaned from 15000C to the same final temperature (temperature drops about 1500℃-1000℃), the properties (β= I ) of products based on fuel composition of (CH2)n deviate from the properties based on C and H2 by about 1-2 percent for enthalpy drop and by about 4~14 percent for pressure of final state, when isentropically expanded from 1500℃ initial state to the final state of the same pressure (pressure ratio about 1000-40), properties of products of (CH2)n deviate from the properties of products of C and H2 by about less than 1 percent for enthalpy drop and by about 1~4 precent for final temperature Under the above conditions, properties of products of arbitrary hydrocarbon fuel deviate form the properties of products of (CH2)n by values less than the above mentioned figures.

Key words: device parameters, excavating machinery, excavating performance, working device