首页> 外文OA文献 >Mathematical modelling and experimental investigation of melting and solidification in a finned phase change material storage
【2h】

Mathematical modelling and experimental investigation of melting and solidification in a finned phase change material storage

机译:翅片相变材料存储中熔化和凝固的数学模型和实验研究

摘要

In latent heat storage, internal heat transfer enhancement techniques such as fins have to be used because of the low heat conductivity of the phase change material (PCM). During the phase change in a PCM storage system the solid-liquid interface moves away from the heat transfer surface and the surface heat flux decreases due to the increasing thermal resistance of the molten or solidified medium. Internal heat transfer enhancement is essential, especially in a solidification process where the main heat transfer mode is conduction.The objective of this study was to develop an analytical model which predicts the solid-liquid interface location and temperature distribution of the fin in melting and especially, in solidification processes with a constant end wall temperature in a finned two-dimensional PCM storage. Heat transfer during the melting and solidification processes in a finned PCM storage was also studied numerically and experimentally. The objective of the experimental work was to evaluate different numerical methods in order to find a reliable numerical method for the comparison of several PCM storage structures.The results of the derived analytical model were compared to numerical results calculated with the FEMLAB multiphysics simulation tool and Digital Fortran 5.0. The simplified analytical equations were solved with FEMLAB in order to find out the accuracy of the analytical solution. The two-dimensional heat transfer problem was also solved numerically by means of the effective heat capacity method and enthalpy method, using FEMLAB and Digital Fortran. The two-dimensional results were compared to simplified one-dimensional results in order to find out the accuracy of the simplified analytical model. The results of the experimental work were compared to the numerical results calculated with FEMLAB, using the effective heat capacity method and enthalpy method, in order to find out the accuracy of different numerical methods.A simplified analytical model based on a linear, transient, thin-fin equation was introduced which predicts the solid-liquid interface location and temperature distribution of the fin in the melting process with a constant imposed end wall temperature for the melting process in a semi-infinite PCM storage and for the solidification process in a finite PCM storage with internal fins. The results show that the analytical models give a satisfactory estimate of fin temperature and the solid-liquid interface. It was noticed that the assumptions made in simplifying the two-dimensional heat transfer problem into a one-dimensional form affected the accuracy to a greater extent than the assumptions made when solving the one-dimensional equations analytically.The results showed that the effective heat capacity method with a narrow temperature range, dT = 2 °C, was the most precise numerical method when numerical results were compared to experimental results in a finned paraffin PCM storage. The FEMLAB program was very suitable for solving different kinds of phase change problems in one, two, or three dimensions.
机译:在潜热存储中,由于相变材料(PCM)的导热系数低,必须使用内部传热增强技术,例如散热片。在PCM存储系统的相变期间,固液界面从传热表面移开,并且由于熔融或固化介质的热阻增加,表面热通量减小。内部传热的增强是必不可少的,特别是在主要传热模式为传导的凝固过程中。本研究的目的是建立一个分析模型,预测熔融过程中翅片的固液界面位置和温度分布,尤其是在冷却过程中。在带有翅片的二维PCM存储器中以恒定的端壁温度进行固化的过程中。还通过数值和实验研究了翅片式PCM存储器在熔化和凝固过程中的传热。实验工作的目的是评估不同的数值方法,以便找到可靠的数值方法来比较几种PCM存储结构。将导出的分析模型的结果与使用FEMLAB多物理场仿真工具和Digital进行的数值结果进行比较Fortran 5.0。用FEMLAB求解简化的解析方程,以找出解析解决方案的准确性。还使用FEMLAB和Digital Fortran通过有效的热容法和焓法对二维传热问题进行了数值求解。将二维结果与简化的一维结果进行比较,以找出简化分析模型的准确性。使用有效热容法和焓法将实验结果与用FEMLAB计算的数值结果进行比较,以找出不同数值方法的准确性。基于线性,瞬态,薄壁的简化分析模型引入了-fin方程,该方程可预测熔化过程中翅片的固-液界面位置和温度分布,其中端壁温度恒定,适用于半无限PCM存储中的熔化过程以及有限PCM中的凝固过程内部带有鳍片。结果表明,分析模型对翅片温度和固液界面给出了令人满意的估计。注意到将二维传热问题简化为一维形式的假设比分析求解一维方程时的假设在更大程度上影响了精度。结果表明,有效热容量当将数值结果与翅片石蜡PCM储存器中的实验结果进行比较时,温度范围窄,dT = 2°C的方法是最精确的数值方法。 FEMLAB程序非常适合于解决一维,二维或三维中的各种相变问题。

著录项

  • 作者

    Lamberg Piia;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号