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POLYMERIC HOLLOW FIBER HEAT EXCHANGERS (PHFHEs): A NEW TYPE OF COMPACT HEAT EXCHANGER FOR LOWER TEMPERATURE APPLICATIONS

机译:聚合物中空纤维换热器(PHFHELS):一种新型紧凑型换热器,用于较低温度应用

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Plastic heat exchangers are characterized by an inferior thermal performance compared to their metal counterparts. Therefore, their usage is mainly limited to handling corrosive media or when ultra high purity is required, e.g., pharmaceutical industry. Polymeric Hollow Fiber Heat Exchangers (PHFHEs) have recently been proposed [1] as a new type of heat exchanger that can overcome these constraints and offer the same or better thermal performance than metallic shell and tube or plate heat exchangers while occupying a much smaller volume. In this paper we report our results for heat transfer in PHFHEs with both parallel and cross flow in the shell side of the device. Fibers made of polypropylene (PP) and polyetheretherketone (PEEK) were tested. In addition, steam condensation studies in PHFHEs are reported for the first time. The overall heat transfer coefficients achieved for water-water and water-brine systems are as high as 1400 Wm{sup}(-2)K{sup}(-1). These values are higher than any value reported for plastic heat exchangers and comparable with commonly acceptable design values for metal shell and tube heat exchangers. Similar coefficients were obtained for steam condensation. Polymeric hollow fiber heat exchangers can also achieve high thermal effectiveness, large number of transfer units (NTU) and very small height of a transfer unit (HTU), if properly rated. If designed like commercial membrane contactors, they can achieve up to 12 transfer units in a single device, not longer than 60-70 cm! In addition, the conductance per unit volume PHFHEs achieved was up to one order of magnitude higher compared to metal heat transfer equipment. This superior thermal performance is also accompanied by considerably lower pressure drops. Therefore, the operation of PHFHEs will be characterized by a low operating cost. Combined with the much lower cost, lower weight and elimination of metal contamination polymer materials offer, it is obvious that PHFHEs constitute a potential substitute for metal heat exchangers on both thermal performance and economical grounds. Possible application fields include the food, pharmaceutical and biomedical industries as well as applications where corrosion resistant, light and very efficient devices are required, i.e., desalination, solar and offshore heat transfer applications.
机译:塑料热交换器的特征在于与金属对应物相比的较差的热性能。因此,它们的用途主要限于处理腐蚀性介质或需要超高纯度时,例如制药行业。最近提出了聚合物中空纤维热交换器(Phfhe)作为一种新型的热交换器,可以克服这些约束,并且提供比金属壳和管或板式热交换器相同或更好的热性能,同时占据更小的体积。在本文中,我们将我们的结果报告了在装置的壳侧的平行和交叉流动的母猪中的热传递结果。测试了由聚丙烯(PP)和聚醚醚酮(PEEK)制成的纤维。此外,首次报告母料中的蒸汽凝结研究。用于水 - 水和水 - 盐水系统的总传热系数高达1400Wm {sup}( - 2)k {sup}( - 1)。这些值高于塑料热交换器报告的任何值,并且与金属壳和管热交换器的常见设计值相当。获得类似的系数以用于蒸汽冷凝。如果适当额定值,聚合物中空纤维热交换器也可以实现高热效率,大量的转移单元(NTU)和传输单元(HTU)的高度非常小。如果设计如商用膜接触器,它们可以在单个设备中获得最多12个转移单元,不超过60-70厘米!此外,与金属传热设备相比,所实现的每单位体积鸟类的电导高达一个数量级。这种卓越的热性能也伴随着显着降低的压降。因此,母猪的操作将特征在于低运行成本。结合低得多的成本,更低的重量和消除金属污染聚合物材料,显然是粉状物质替代金属换热器的潜在替代品,可以在热性能和经济地面上进行金属换热器。可能的应用领域包括食品,制药和生物医学行业以及需要耐腐蚀,光和非常有效的装置的应用,即海水淡化,太阳和海上传热应用。

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