Performance evaluation of nano-enhanced phase change materials during discharge stage in waste heat recovery

被引:86
|
作者
Soni, Vikram [1 ]
Kumar, Arvind [1 ]
Jain, V. K. [1 ,2 ]
机构
[1] Indian Inst Technol Kanpur, Dept Mech Engn, Kanpur 208016, Uttar Pradesh, India
[2] MANIT Bhopal, Mech Engn Dept, Bhopal, India
关键词
Waste heat recovery; Phase change material; Discharge; Nano-enhancement; Erythritol; Thermal performance; CHANGE MATERIALS NEPCM; THERMAL-CONDUCTIVITY; CHANGE NANOCOMPOSITES; PARAFFIN WAX; PCM; SOLIDIFICATION; CAPSULE; SUSPENSIONS; TRANSPORT; BEHAVIOR;
D O I
10.1016/j.renene.2018.05.009
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Waste heat recovery in temperature range of 100 degrees C-150 degrees C based on a novel phase change material (PCM) is numerically investigated. The study is performed using a numerical model accounting phase change, heat transport and convection during the discharge stage in a spherical capsule. High thermal conductivity nanoparticles are added to the base PCM to deal with the issue of low energy discharge. The homogeneous modelling approach is employed to predict the modified thermophysical properties of the Nano-enhanced phase change material (NEPCM) and to capture the effects of nanoparticles on the solidification process and the energy discharge. Cu/Erythritol, Al/Erythritol, TiO2/Erythritol and SiO2/ Erythritol composites are investigated within the limit of 5% nanoparticle volume fraction. Considering discharging time as a critical parameter, 2.5% Cu/Erythritol composite is used and a detailed analysis is presented for thermophysical properties, thermal field, velocity field and solidified fraction field during the discharge process. The compromise between the decrease in storage capacity and the increase in discharge rate is described using a thermal performance analysis. Since the waste heat (industry exhaust and solar energy) is typically available in abundance, it is suggested that the loss of storage capacity is less significant than the obtained benefit of swift discharging operation. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:587 / 601
页数:15
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