首页> 外文学位 >Computational simulations of latent heat thermal energy storage systems---with innovative and first-principles based simulation for the underlying unsteady melting (and solidification) processes.
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Computational simulations of latent heat thermal energy storage systems---with innovative and first-principles based simulation for the underlying unsteady melting (and solidification) processes.

机译:潜热热能存储系统的计算模拟-利用基于创新和第一性原理的模拟来进行潜在的非稳态熔化(和凝固)过程。

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摘要

This thesis develops an effective modeling and simulation procedure for a specific thermal energy storage system commonly used and recommended for various applications (such as an auxiliary energy storage system for solar heating based Rankine cycle power plant). This thermal energy storage system transfers heat from a hot fluid (termed as heat transfer fluid---HTF) flowing in a tube to the surrounding phase change material (PCM). Through unsteady melting or freezing process, the PCM absorbs or releases thermal energy in the form of latent heat. Both scientific and engineering information is obtained by the proposed first-principle based modeling and simulation procedure. On the scientific side, the approach accurately tracks the moving melt-front (modeled as a sharp liquid-solid interface) and provides all necessary information about the time-varying heat-flow rates, temperature profiles, stored thermal energy, etc. On the engineering side, the proposed approach is unique in its ability to accurately solve---both individually and collectively---all the conjugate unsteady heat transfer problems for each of the components of the thermal storage system. This yields critical system level information on the various time-varying effectiveness and efficiency parameters for the thermal storage system.
机译:本文针对常用且推荐用于各种应用的特定热能存储系统(例如基于兰金循环式太阳能发电厂的辅助储能系统),开发了一种有效的建模和仿真程序。该热能存储系统将热量从在管中流动的热流体(称为传热流体--- HTF)传递到周围的相变材料(PCM)。通过不稳定的熔化或冷冻过程,PCM以潜热的形式吸收或释放热能。所提出的基于第一原理的建模和仿真程序都可以获取科学和工程信息。从科学的角度来看,该方法可以准确地跟踪移动的熔体前沿(建模为清晰的液固界面),并提供有关随时间变化的热流率,温度曲线,存储的热能等所有必要信息。在工程方面,该方法的独特之处在于能够准确地(无论是单独地还是集体地)解决蓄热系统每个组件的所有共轭非稳态传热问题。这会产生有关热存储系统各种时变有效性和效率参数的关键系统级信息。

著录项

  • 作者

    Gumaste, Rohan Achyut.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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