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首页> 外文期刊>Industrial & Engineering Chemistry Research >Collocation Methods for Distillation Design. 1. Model Description and Testing
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Collocation Methods for Distillation Design. 1. Model Description and Testing

机译:蒸馏设计的搭配方法。 1.型号说明和测试

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Fast and accurate distillation design requires a model that significantly reduces the problem size while accurately approximating a full-order distillation column model. This collocation model builds on the concepts of past collocation models for design of complex real-world separation systems. Two variable transformations make this method unique. Polynomials cannot accurately fit trajectories which flatten out. In columns, flat sections occur in the middle of large column sections or where concentrations go to 0 or 1. With an exponential transformation of the tray number which maps zero to an infinite number of trays onto the range 0-1, four collocation trays can accurately simulate a large column section. With a hyperbolic tangent transformation of the mole fractions, the model can simulate columns which reach high purities. Furthermore, this model uses multiple collocation elements for a column section, which is more accurate than a single high-order collocation section.
机译:快速准确的蒸馏设计需要一个模型,该模型可以显着减小问题的大小,同时可以精确地逼近全阶蒸馏塔模型。此搭配模型建立在过去搭配模型的概念上,用于设计复杂的实际世界分离系统。两个变量转换使该方法变得唯一。多项式不能准确地拟合变平的轨迹。在色谱柱中,扁平截面出现在较大的色谱柱截面的中间或浓度为0或1的位置。通过塔盘数的指数转换(将零个到无限个塔盘映射到0-1范围),可以配置四个并置塔盘准确地模拟一个较大的列截面。通过摩尔分数的双曲正切变换,该模型可以模拟达到高纯度的色谱柱。此外,此模型对一个列部分使用多个并置元素,比单个高阶并置部分更准确。

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