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Experimental characterization of a novel soft polymer heat exchanger for wastewater heat recovery

机译:一种新型软聚合物热交换器进行废水热回收的实验表征

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摘要

Wastewater released from showers, sinks, and washers contains a considerable amount of waste heat that can be recovered by using a heat exchanger. Conventional metal heat exchangers for wastewater heat recovery have common problems of corrosion, fouling and clogging, which makes it necessary to develop a new type of heat exchanger for such low-grade thermal energy recovery applications. This study deals with a novel patented polymer heat exchanger (WO2020049233A1) made of soft polyurethane tubes that are capable of oscillation once subjected to external forces. Laboratory tests coupled with theoretical analyses show a stable global heat transfer coefficient of 100-110 W/m~2·K, achieving 67-92% of the performance of titanium-, aluminum-, and copper-made heat exchangers with the same configuration. It further reveals that the performance of the soft heat exchanger can be enhanced by 30% when it is under oscillation. In addition, the external convective thermal resistance appeats to be the dominant one instead of heat conduction through the wall material. The special operating condition of heat recovery from a sewer pipeline makes the polymer heat exchanger particularly adapted with its equivalent thermal performance but advantages of high flexibility, modularity, and low cost.
机译:从淋浴,水槽和洗衣机释放的废水包含相当大量的废热,可以通过使用热交换器来回收。用于废水热量回收的常规金属换热器具有腐蚀,污垢和堵塞的常见问题,这使得有必要为这种低级热能回收应用开发一种新型的热交换器。该研究涉及一种新型专利的聚合物热交换器(WO2020049233A1),其由软质聚氨酯管制成,其能够振荡,曾经受到外力。与理论分析相结合的实验室测试显示了100-110W / m〜2·k的稳定全球传热系数,达到具有相同配置的钛,铝和铜制成的热交换器的性能的67-92% 。它还揭示了软换热器的性能在振荡时可以增强30%。此外,外部对流热阻高呼吸是主导的一种代替通过壁材料的热传导。从下水道管道中热回收的特殊操作条件使得聚合物热交换器特别适用于其等同的热性能,但具有高柔韧性,模块化和低成本的优点。

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