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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >The relationship between the condition of a mineral-based heat transfer fluid and the frequency that it is sampled and chemically analysed
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The relationship between the condition of a mineral-based heat transfer fluid and the frequency that it is sampled and chemically analysed

机译:矿物基传热流体的状况与其采样和化学分析频率之间的关系

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摘要

A large number of industrial processes require the efficient transfer of heat energy. Heat transfer fluids (HTFs) are imperative in such processes. The efficient transfer of heat energy is affected by system fouling and past studies have mainly focused on the fouling of heat exchangers but not the overall system. In normal operations HTFs are routinely sampled and chemically analysed to get an insight into the condition of both the HTF and the heat transfer system. The aim of routine maintenance programmes is to sustain normal operation and slow the rate of thermal degradation. HTF analysis is used to assess the chemical by-products of thermal degradation and oxidation. It is also used to detect system wear particles, water and contamination. Manufacturers often recommend that an HTF is analysed at least once per year. To date, however, it is unclear if this is the optimal sampling frequency. The current study investigated if sampling frequency had any bearing on the overall condition of mineral-based HTFs. Results revealed that parameters of HTF condition were inversely related to sampling frequency with increases in sampling frequency being correlated with improvements in overall HTF condition. This implies that frequent sampling works to improve the health of mineral-based HTFs. The implication being that a mineral HTF should be assessed as frequently as possible. Furthermore, when systems are sampled regularly (i.e., >= 1 per year), total acid number and closed flash temperature need to be monitored closely as these were most frequently out of specification when sampled between once per year and four times per year. (C) 2014 Elsevier Ltd. All rights reserved.
机译:大量的工业过程要求热能的有效传递。传热流体(HTF)在此类过程中势在必行。热能的有效传递受系统结垢的影响,过去的研究主要集中在热交换器的结垢上,而不是整个系统。在正常操作中,会定期对HTF进行采样和化学分析,以了解HTF和传热系统的状况。例行维护程序的目的是维持正常运行并减缓热降解速度。 HTF分析用于评估热降解和氧化的化学副产物。它还用于检测系统磨损颗粒,水和污染物。制造商通常建议每年至少对HTF进行一次分析。但是,到目前为止,尚不清楚这是否是最佳采样频率。当前的研究调查采样频率是否与矿物基HTF的整体状况有关。结果显示,HTF条件的参数与采样频率成反比,采样频率的增加与整体HTF条件的改善相关。这意味着频繁采样有助于改善基于矿物的HTF的健康。这意味着应该尽可能频繁地评估矿物HTF。此外,当对系统进行定期采样(即每年> = 1)时,需要密切监测总酸值和封闭闪蒸温度,因为当它们在每年一次至每年四次之间采样时,最经常超出规格范围。 (C)2014 Elsevier Ltd.保留所有权利。

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