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INFLUENCE OF A HEAT FLUX TO ICE ADHESION FORCE

机译:热通量对结冰力的影响

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摘要

The secondary working fluid ice slurry is a solution of water, a freezing point reducing additive like ethanol, glycol or salt and small ice particles. The small ice particles are generated in ice slurry generators. The most commonly used ice slurry generator is the scraped surface ice slurry generator, where ice particles grow on a wall of a heat exchanger. After a growth time the particles are scraped off with a scraper, brush or an orbiting rod. Substantial motor power is required for the scraper in order to peel off the interfacial bonding between the ice particle and the heat exchanger surface. The whole power converts into heat in the ice slurry system and therefore necessitates a higher cooling capacity.rnThe adhesion force between the ice particle and the heat exchanger wall can be reduced with a periodic high heat flux into the interlayer of the bonding. For this research a new method to measure the adhesion force between ice and an aluminum surface during the application of a heat flux was designed and a test rig was built. The method of measurement is shown in the paper. The results of the adhesion force without a heat flux are compared with literature values.
机译:次级工作流体冰浆是水,降低冰点的添加剂(如乙醇,乙二醇或盐)和小冰粒的溶液。小冰粒在冰浆发生器中产生。最常用的冰浆生成器是刮面冰浆生成器,其中冰粒在热交换器的壁上生长。生长时间过后,用刮刀,刷子或绕动杆将颗粒刮掉。刮板需要大量的电动机功率,以剥离冰粒和热交换器表面之间的界面粘结。整个功率在冰浆系统中转化为热量,因此需要更高的冷却能力。rn可以通过周期性地将高热量通入粘结层来降低冰粒与热交换器壁之间的粘附力。为了进行这项研究,设计了一种新的方法来测量在施加热通量时冰与铝表面之间的粘附力,并建立了试验台。本文中显示了测量方法。将没有热通量的粘附力结果与文献值进行比较。

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