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The role of flooding in the design of vent and reflux condensers

机译:溢流在排气冷凝器和回流冷凝器设计中的作用

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摘要

Reflux and vent condensers are vertical separators where film condensation occurs. A vapour mixture is supplied at the bottom of the tubes and encounters vertical cold surfaces. A falling film forms and exits from the bottom of the tubes, flowing counter-current to the vapour, but co-current to the coolant on the shell side. Flooding occurs when the condensate flow moves from a gravity regime to a shear regime. Vapour velocities at or above the flooding velocity will cause the liquid to exit from the top of the tubes rather than from the bottom. The main disadvantage of these condensers is the limited flooding velocity allowed. Several investigators propose correlations to predict the flooding velocity. In most cases these correlations come from isothermal experiments data, thus the general recommendation of using safety factors of at least 30%. This work compares these correlations to new experimental values of flooding in steam/air vent condensation. The experimental apparatus is a 3 m long, double-pipe condenser with an internal diameter of 0.028 m. The conclusions presented here will aid the design engineer to understand better the applicability of the discussed correlations in the design of steam/air vent condensers.
机译:回流冷凝器和排气冷凝器是发生膜冷凝的垂直分离器。蒸气混合物在管的底部供应,并遇到垂直的冷表面。降膜形成并从管的底部流出,与蒸气逆流,但与壳侧的冷却剂并流。当凝结水从重力状态转移到剪切状态时,就会发生洪水泛滥。等于或大于浸没速度的蒸汽速度将导致液体从管子的顶部而不是底部排出。这些冷凝器的主要缺点是允许的溢流速度有限。一些研究者提出相关性以预测洪水速度。在大多数情况下,这些相关性来自等温实验数据,因此通常建议使用至少30%的安全系数。这项工作将这些相关性与蒸汽/通风口冷凝水淹没的新实验值进行了比较。实验设备是一个3 m长的双管冷凝器,内径为0.028 m。此处提出的结论将有助于设计工程师更好地理解所讨论的相关性在蒸汽/空气排放冷凝器设计中的适用性。

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