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首页> 外文期刊>Science and Technology for the Built Environment >Evaporation of Al2O3-water nanofluids in an externally micro-grooved evaporator
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Evaporation of Al2O3-water nanofluids in an externally micro-grooved evaporator

机译:在外部微沟槽蒸发器中蒸发Al2O3-水纳米流体

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摘要

Nanofluid is a mixture of liquid and solid phase nano-sized particles that shows a high thermal conductivity compared to its base fluid. With micro-grooves being a good method to increase the surface area for heat transfer, there is potential for nanofluid together with microgrooves to improve the performance of cooling systems. This article aims to study the effect of an externally micro-grooved surface on evaporation of aqueous nanofluids and discuss its potential application. In order to prepare a stable nanofluid, the duration time required for ultrasonication, which is a common technique in the preparation process of nanofluid, was first investigated. Next, experiments were conducted to investigate the effect of the micro-grooved surface on the evaporation rate of the nanofluids under different environmental conditions. Results show that the advantage of the enhanced thermal properties of nanofluids can only be manifested by the presence of micro-grooves. The use of a heat exchanger with nanofluids together with micro-grooves shows a better heat transfer performance than a heat exchanger without micro-grooves using water as the coolant. The enhancement is dependent on the vapor pressure and the largest improvement can be up to 44.6%.
机译:纳米流体是液体和固相纳米尺寸颗粒的混合物,其与其基础流体相比显示出高导热率。通过微槽是增加热传递表面积的好方法,含有纳米流体的潜力与微液流一起提高冷却系统的性能。本文旨在研究外部微槽表面对纳米流体水溶液蒸发的影响,并讨论其潜在应用。为了制备稳定的纳米流体,首先研究了超声波所需的持续时间,即纳米流体的制备过程中的常用技术。接下来,进行实验以研究微沟表面在不同环境条件下纳米流体蒸发速率的影响。结果表明,纳米流体的增强热性能的优点只能通过微槽的存在表现出。将与纳米流体的热交换器一起与微槽一起使用比使用水作为冷却剂的微槽的热交换器更好地发热性能。增强依赖于蒸气压力,最大的改善可达44.6%。

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