真实气体

  • 网络real gas
真实气体真实气体
  1. 高温真实气体底部流动的NS方程数值计算

    Numerical Calculation of Base flow for NS equations of High Temperature Real Gas

  2. 真实气体Cp-CV值的理论分析

    Theoretical Analysis of C_p-C_V of Real Gas

  3. 真实气体绝热指数KV和KT的校正计算

    Corrective Calculation of Isentropic Exponent K_v and K_t of Real Gases

  4. 考虑真实气体PVT动态的高速非达西渗流模型

    A High Velocity Non-Darcy Flow Model Considering Real Gas PVT Behavior

  5. 用SRK方程计算真实气体的密度

    Calculating the Density of real gas Using SRK equation

  6. 以此为基础,构造了求解真实气体流动控制方程的高分辨率TVD数值格式。

    And a numerical method with high resolution TVD schemes for solving the governing equations of real gas flows is developed .

  7. 最后提出了用CFD设计高焓风洞试验条件的思路,并识别真实气体效应显著改变热流分布的高焓风洞试验能力区域。

    Finally the use of CFD for the design of the experimental conditions has been demonstrated by identifying the regions within the wind tunnel envelope where real gas effects significantly change the heat transfer rate distribution .

  8. 针对电弧风洞高焓气体来流条件,通过数值求解三维化学非平衡Navier-Stokes方程,分析无烧蚀球锥全目标绕流场真实气体效应。

    On the incoming flow condition of high enthalpy air in an electric arc wind tunnel , three-dimensional chemical non - equilibrium Navier-Stokes equations are solved numerically to analyze real gas effect in complete flowfields around a non-ablated spherical cone model .

  9. 本文考虑温度、压力和组成对烃类混合物相平衡的影响,选用SRK真实气体状态方程研究轻油循环掺合比与丙丁烷收率的关系。

    Taking into consideration of influences of composition , temperature and pressure on phase equilibrium of hydrocarbon mixtures , the SRK real gas state equation is used to study the relationship between sophistication ratio and recovery of propane and butane .

  10. 考虑了真实气体的化学反应、内部自由度的激发等,对高温(2000-10000K)真实气体混合物的热传导系数的实验过程进行了数值模拟。获得了纯空气组元的真实热传导系数。

    Taking the chemical reaction of real gas , the exciting of internal freedom of particles into consideration , experimental process of the gas mixed conductivity at high temperature ( 2000 10000K ) was simulated , and got real conductivity of pure air components .

  11. 横向喷流干扰中的真实气体效应研究

    A study of real gas effects on lateral jet interaction

  12. 蒸汽及燃气透平内部真实气体流动问题的研究

    Investigation of Real Gas Flows Within Steam and Gas Turbines

  13. 利用真实气体效应提高激波阶跃压力

    Utilization of real gas effect to increase shock step pressure

  14. 确定真实气体拟压力的一种新方法

    A new technique in the determination of PSEUDOCRITICALS of a real gas

  15. 考虑真实气体效应的激波速度计算

    The Calculation of Shock Wave Speed in a Real Gas Shock Tube

  16. 真实气体在均质气藏内流动的新模型及其应用

    A New Model of Real Gas Filtering in Homogeneous Gas Reservoir and Application

  17. 高温真实气体效应中催化效应对气动热影响的实验探索

    The experiment exploration of catalyst effects on aerodynamic heat in real gas effects

  18. 真实气体等压热容的关联

    Relationship of Equipressure Volumetric Heat of Real Gas

  19. 当一个真实气体,向真空膨胀咱的时候温度会下降。

    When you expand a real gas into vacuum , the temperature goes down .

  20. 高动压激波管中的真实气体效应

    Real Gas Effect in the Dynamic-High-Pressure Shock Tube

  21. 真实气体流动的相似规律

    The similarity law for real gas flow

  22. 真实气体拟压力的计算

    Calculation of pseudo pressure for real gas

  23. 一种用于真实气体流动的数值计算方法

    Numerical Method for Real Gas Flows

  24. 极超音速成型装药射流头部激波作用下的真实气体效应分析

    Analysis of Real Gas Effect Under the Action of Hypersonic Shaped Charge Jet Top Shock Wave

  25. 存在衰减和真实气体效应的激波管激波速度的计算

    The Calculation of Shock Wave Speed in the Presence of Real Gas Effect and Shock Attenuation

  26. 真实气体临界流量系数

    Real gas critical flow coefficient

  27. 本文归纳了真实气体的状态方程,并推荐一个计算逸度的简便公式。

    The article sums up the constitutional equation of authentic gas and recommends a convenient formula of calculating fugacity .

  28. 真实气体模型采用考虑七种组分四种反应的汉森模型。

    The Hansen model considering seven species compositions and four chemical reactions was adopted as a model considered real gas effect .

  29. 在真实气体物态方程中,压强和体积的修正项导致了节流过程的致冷和致热。

    Due to the terms of pressure and volume corrections , the real gas occurs heating or cooling during the Joule-Thomson process .

  30. 但是,理想气体实际上是不存在的,而真实气体在一般情况下是不适用于这一方程的。

    But the ideal gas does not exist in reality , and this equation cannot apply to the actual gas in general .