Temperature-Dependent Thermal Conductivity Measurement System for Various Heat Transfer Fluids

Q3 Engineering
Y. Anggraini, A. O. Silalahi, I. Sutjahja, D. Kurnia, S. Viridi, S. Wonorahardjo
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引用次数: 4

Abstract

Accurate measurement of the thermal conductivity of a heat transfer fluid (HTF) is important for optimizing the performance of a thermal energy storage system. Herein, we develop a system to measure the thermal conductivity of an HTF during temperature variation, and the system was checked to measure several samples comprising water, lauric acid, stearic acid, oleic acid, and coconut oil. The thermal conductivity was measured using a KS-1 sensor of a KD2 Pro analyzer. In the study, a static heat conducting medium was used to control the temperature of the fluid, instead of the commonly used flowing water bath. The measured thermal conductivities of water (298 to 318 K) and lauric acid (323 to 373 K), stearic acid (358 to 372 K), oleic acid (334 to 372 K), and coconut oil (298 to 363 K) were compared to data from previous studies and fitted to available models. The accuracy of the data is further analyzed by relating the number of C and H atoms in the fatty acid, and the fatty acid content in coconut oil.
各种传热流体的温度相关导热系数测量系统
准确测量传热流体的导热系数对于优化储热系统的性能具有重要意义。在此,我们开发了一个系统来测量温度变化时HTF的导热系数,并对该系统进行了测试,以测量几种样品,包括水、月桂酸、硬脂酸、油酸和椰子油。热导率测量采用KD2 Pro分析仪的KS-1传感器。在研究中,采用静态导热介质来控制流体的温度,而不是常用的流动水浴。测量的水(298至318 K)、月桂酸(323至373 K)、硬脂酸(358至372 K)、油酸(334至372 K)和椰子油(298至363 K)的导热系数与先前研究的数据进行了比较,并拟合到现有模型中。通过脂肪酸中C、H原子数与椰子油中脂肪酸含量的关系,进一步分析了数据的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Instrumentation Mesure Metrologie
Instrumentation Mesure Metrologie Engineering-Engineering (miscellaneous)
CiteScore
1.70
自引率
0.00%
发文量
25
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