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首页> 外文期刊>International Journal of Computational Materials Science and Engineering >NUMERICAL SIMULATIONS OF PARTICLE DEPOSITION IN METAL FOAM HEAT EXCHANGERS
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NUMERICAL SIMULATIONS OF PARTICLE DEPOSITION IN METAL FOAM HEAT EXCHANGERS

机译:金属泡沫换热器中颗粒沉积的数值模拟

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摘要

Australia is a high-potential country for geothermal power with reserves currently estimated in the tens of millions of petajoules, enough to power the nation for at least 1000 years at current usage. However, these resources are mainly located in isolated arid regions where water is scarce. Therefore, wet cooling systems for geothermal plants in Australia are the least attractive solution and thus air-cooled heat exchangers are preferred. In order to increase the efficiency of such heat exchangers, metal foams have been used. One issue raised by this solution is the fouling caused by dust deposition. In this case, the heat transfer characteristics of the metal foam heat exchanger can dramatically deteriorate. Exploring the particle deposition property in the metal foam exchanger becomes crucial. This paper is a numerical investigation aimed to address this issue. Two-dimensional (2D) numerical simulations of a standard one-row tube bundle wrapped with metal foam in cross-flow are performed and highlight preferential particle deposition areas.
机译:澳大利亚是地热发电的高潜力国家,目前的储量估​​计为数千万皮塔焦耳,足以在当前使用条件下为该国供电至少1000年。但是,这些资源主要位于缺水的干旱地区。因此,澳大利亚的地热发电厂的湿式冷却系统是最不吸引人的解决方案,因此首选空气冷却的热交换器。为了提高这种热交换器的效率,已经使用了金属泡沫。该解决方案提出的一个问题是由灰尘沉积引起的结垢。在这种情况下,金属泡沫热交换器的传热特性会急剧恶化。探索金属泡沫交换器中的颗粒沉积特性变得至关重要。本文是旨在解决此问题的数值研究。进行了标准的单行管束的二维(2D)数值模拟,该管束在横向流动中包裹了金属泡沫,并突出了优先的颗粒沉积区域。

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