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Two-phase heat transfer mechanisms within plate heat exchangers: Experiments and modeling.

机译:板式换热器内的两相传热机制:实验和建模。

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摘要

Two-phase flow heat exchangers have been shown to have very high efficiencies, but the lack of a dependable model and data precludes them from use in many cases. Herein a new method for the measurement of local convective heat transfer coefficients from the outside of a heat transferring wall has been developed, which results in accurate local measurements of heat flux during two-phase flow. This novel technique uses a chevron-pattern corrugated plate heat exchanger consisting of a specially machined Calcium Fluoride plate and the refrigerant HFE7100, with heat flux values up to 1 W cm-2 and flow rates up to 300 kg m-2s-1. As Calcium Fluoride is largely transparent to infra-red radiation, the measurement of the surface temperature of PHE that is in direct contact with the liquid is accomplished through use of a mid-range (3.0--5.1 microm) infra-red camera.;The objective of this study is to develop, validate, and use a unique infrared thermometry method to quantify the heat transfer characteristics of flow boiling within different Plate Heat Exchanger geometries. This new method allows high spatial and temporal resolution measurements. Furthermore quasi-local pressure measurements enable us to characterize the performance of each geometry. Validation of this technique will be demonstrated by comparison to accepted single and two-phase data. The results can be used to come up with new heat transfer correlations and optimization tools for heat exchanger designers.;The scientific contribution of this thesis is, to give PHE developers further tools to allow them to identify the heat transfer and pressure drop performance of any corrugated plate pattern directly without the need to account for typical error sources due to inlet and outlet distribution systems. Furthermore, the designers will now gain information on the local heat transfer distribution within one plate heat exchanger cell which will help to choose the correct corrugation geometry for a given task.
机译:已经显示出两相流换热器具有很高的效率,但是缺乏可靠的模型和数据使它们在许多情况下无法使用。在本文中,已经开发了一种用于从传热壁的外部测量局部对流传热系数的新方法,该方法可在两相流期间精确地局部测量热通量。这项新技术使用了V型波纹板式热交换器,该热交换器由经过特殊加工的氟化钙板和制冷剂HFE7100组成,其热通量值高达1 W cm-2,流率高达300 kg m-2s-1。由于氟化钙对红外辐射基本上是透明的,因此与液体直接接触的PHE的表面温度的测量是通过使用中型(3.0--5.1微米)红外摄像机完成的。这项研究的目的是开发,验证和使用独特的红外测温方法来量化不同板式换热器几何形状内流沸腾的传热特性。这种新方法可以进行高空间和时间分辨率的测量。此外,准局部压力测量使我们能够表征每种几何形状的性能。通过与接受的单相和两相数据进行比较,将证明该技术的有效性。结果可用于为换热器设计者提供新的传热关联和优化工具。本论文的科学贡献是,为PHE开发人员提供了更多工具,使他们能够识别任何产品的传热和压降性能。直接形成波纹板状,而无需考虑由于入口和出口分配系统而引起的典型误差源。此外,设计人员现在将获得有关一个​​板式换热器单元内局部传热分布的信息,这将有助于为给定任务选择正确的波纹几何形状。

著录项

  • 作者

    Solotych, Valentin.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Mechanical engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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