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作 者:杨思远 韩瑞岩 杨竹强[1] 张博[1] YANG Siyuan;HAN Ruiyan;YANG Zhuqiang;ZHANG Bo(Liaoning Key Laboratory of Complex Energy Conversion and Utilization,School of Energy and Power Engineering,Dalian University of Technology,Dalian 116024,China)
机构地区:[1]大连理工大学能源与动力学院,辽宁省复杂能源转换和高效利用重点实验室,辽宁大连116024
出 处:《热科学与技术》2021年第6期593-600,共8页Journal of Thermal Science and Technology
摘 要:超临界流体的比定压热容数据的准确测量对于众多科学研究和工程应用至关重要。基于流动型量热法建立了一套适用于测量温度在25.00~80.00℃、压力0.10~12.00 MPa的比定压热容在线测量实验系统,其测量的扩展相对不确定度为1.66%~2.46%(置信因子k=2)。在使用纯水(工况压力为7.00~12.00 MPa,温度25.00~60.00℃)、环己烷(工况压力为2.00~6.00 MPa,温度30.00~80.00℃)和CO_(2)(工况压力为6.70~12.00 MPa,温度25.00~70.00℃)进行测量的基础上,得到平均绝对偏差分别为0.14%、0.99%和0.78%,最大绝对偏差分别为0.26%、1.32%和2.28%。数据测量的结果验证了实验系统的实用性和可靠性,能够为科研和工程设计提供准确的数据测量支持。Accurate measurement of isobaric specific heat capacity(cp)of supercritical fluids is essential for many scientific researches and engineering applications.Based on the flow-type calorimetry method,an experiment platform for measuring cp comprising the temperature range of 25.00-80.00℃and the pressure range of 0.10-12.00 MPa was constructed.The relative expanded uncertainty of cp was estimated to 1.66%-2.46%(coverage factor k=2).To verify the practicability and reliability of the flow calorimeter method,pure water(7.00-12.00 MPa,25.00-60.00℃),cyclohexane(2.00-6.00 MPa,30.00-80.00℃)and CO_(2)(6.70-12.00 MPa,25.00-70.00℃)were tested respectively.The average absolute deviations were 0.14%,0.99%and 0.78%,and the maximum absolute deviations were 0.26%,1.32%and 2.28%respectively.The experiment platform can provide accurate data measurement support for future scientific researches and engineering designs.
分 类 号:TL371[核科学技术—核技术及应用]
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