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Vapor-Liquid Equilibrium Calculation ofMulti-Components System with Estimation ofPre-Heat Temperature

机译:估计预热温度的多组分系统汽液平衡计算

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This general process design for multi-components vapor-liquid equilibrium flash calculation of a two-phase system comprises bubble and dew point calculations, estimation of the flash point, calculations of the vapor split and resulted compositions with flow rates in each of the liquid and vapor phases and estimation of the pre-heat temperature needed for a specific vapor split via unprecedented theories. The technique employed entails prediction of the equilibrium temperature, based on the critical temperatures of the feed’s components, which in turn is used to estimate the corresponding flash pressure. The theories entail accommodate any light hydrocarbons’ mixture and other molecules which are of relatively uncomplicated molecular force fields, as in the case of natural gas liquid. Appropriate gases and liquid properties correlations parameters were obtained from the literatures and used in different equations most suitable for vapor-liquid equilibrium calculations of any light hydrocarbons’ mixture and other mixtures of relatively uncomplicated molecular force fields. The computer implementation puts forward for this design calculation, which can handle up to twelve components, aids the calculations of vapor-split, which requires several iterations, and other results.
机译:这种用于两相系统的多组分气液平衡闪蒸计算的通用过程设计包括气泡和露点计算,闪点估计,蒸汽分解计算以及在每种液体和液体中具有流速的合成物气相和通过空前的理论估算特定蒸汽分解所需的预热温度。采用的技术需要根据进料成分的临界温度预测平衡温度,然后将其用于估算相应的闪蒸压力。这些理论需要适应任何轻烃的混合物以及分子力场相对简单的其他分子,例如天然气液体。从文献中获得了合适的气体和液体特性相关参数,并将其用于最适合任何轻烃混合物和相对简单分子力场的其他混合物的气液平衡计算的不同方程式中。针对该设计计算提出了计算机实现,该计算可以处理多达十二个组件,有助于计算蒸气分裂,这需要多次迭代以及其他结果。

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