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Predicting the Pressure Drop of Corrugated Sheet Structured Packings in Deep Vacuum Applications

机译:预测深吸尘器中瓦楞纸板结构封装的压降

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摘要

Advanced corrugated sheet structured packings are considered a natural choice for deep vacuum distillation. In many of these applications that occur at absolute pressures below 0.01 bar at the top of the column, the low density gas/vapor driven by pressure ascends through an irrigated packed bed under laminar flow conditions. This implies that the packing geometry features aiming to reduce the form drag of advanced packing may not be as effective, if at all, as experienced in common applications where turbulent flow prevails. To consider this appropriately, a theoretically founded expression for laminar flow friction factor has been incorporated into Delft model (DM). With this extension, the predicted pressure drop within laminar flow region approaches closely that estimated using well-established empirical model available in software package SULCOL. In absence of adequate experimental evidence, extended DM was validated using newest data obtained at FRI with an advanced wire gauze structured packing in total reflux experiments carried out with paraxylene/orthoxylene system at 0.02 and 0.1 bar top pressure in a column with internal diameter of 1.22 m.
机译:先进的波纹板结构填料被认为是深度真空蒸馏的自然选择。在许多这些应用中,在柱顶部的绝对压力下方0.01巴出现的应用中,通过压力驱动的低密度气/蒸汽通过层流条件下的灌溉包装床上升。这意味着旨在减少先进包装的形式拖动的包装几何特征可能与湍流流动普遍存在的共同应用中的常见应用中的经验无关。为了适当地考虑这一点,已经将层流摩擦因子的理论上成立的表达纳入了Delft模型(DM)。利用这种延伸,层流流量区域内的预测压降接近,估计使用软件包Sulcol中可用的良好的经验模型来估计。在没有足够的实验证据的情况下,使用在FRI上获得的最新数据进行延长的DM,在柱子中的柱子/邻氧化物系统的总回流型实验中,在柱中的柱子直径为1.22 m。

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