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Determination of air-to-air heat wheel sensible effectiveness using temperature step change data

机译:使用温度阶跃变化数据确定空对空热轮的合理性

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摘要

The determination of the effectiveness of large heat wheels using standard measured data and test conditions can be very expensive and time consuming. The main contribution of this paper is that it tests heat wheel components rather than the wheel itself. In addition, this paper deals directly with the question of what accuracy can be achieved for the determination of sensible energy effectiveness by using a transient step change method for the exchanger matrix materials in a test cell. In this study, the sensible effectiveness of heat wheels is predicted by performing a number of cyclic and single step change transient experiments on a parallel-plate heat exchanger. A new experimental facility is developed to cause a step change for the inlet air temperature of the exchanger. In the cyclic tests, the heat exchanger is exposed to a periodic inlet temperature steps; afterward, the sensible effectiveness of parallel-flow and counter-flow heat wheel, comprised of the same material as parallel-plate exchanger, is determined using the obtained temperature profiles. It is find that this method can be used to determine the sensible effectiveness of parallel-flow heat wheel. However, the high uncertainty found in the sensible effectiveness of counter-flow heat wheel, ±32%, makes the results unreliable. In the single step-change test, a time constant is assigned to the exchanger response when it is subjected to a step change in inlet temperature. The time constant is obtained by fitting the experimental data to a first order exponential time response curve. An analytical solution posits that the effectiveness of the heat wheel depends only on the product of the time constant and the wheel angular speed, or angle ratio. Comparing values of the sensible effectiveness calculated through available empirical correlations and the ones obtained by single step change experiment showed less than 3% difference in results when the heat capacity rate ratio is greater than 5. It is concluded that due to simplicity, accuracy, and low cost of the single step change experiments, it is the preferred method to determine the effectiveness of heat wheels operating at a specified rotary speeds, provided the flow channel geometries and Reynolds numbers for both the wheel and the small-scale test cell.
机译:使用标准测量数据和测试条件来确定大型热轮的效率可能非常昂贵且耗时。本文的主要贡献在于,它测试的是热轮组件,而不是热轮本身。此外,本文直接涉及通过对测试单元中的交换矩阵材料使用瞬态阶跃变化方法,可以在确定显着能量效率方面达到何种精度的问题。在这项研究中,通过在平行板式换热器上执行许多循环和单步变化的瞬态实验,可以预测热轮的合理效果。开发了一种新的实验设备,以使交换器的进气温度发生阶跃变化。在循环测试中,热交换器要经受周期性的入口温度阶跃;然后,使用获得的温度曲线确定由与平行板式换热器相同的材料构成的平行流和逆流热轮的显着有效性。发现该方法可用于确定平行流热轮的合理有效性。但是,在逆流热轮的显着有效性中发现的高度不确定性为±32%,这使得结果不可靠。在单阶跃变化测试中,当交换器的入口温度发生阶跃变化时,会将时间常数分配给交换器响应。通过将实验数据拟合到一阶指数时间响应曲线,可以获得时间常数。一种分析解决方案认为,热轮的有效性仅取决于时间常数与轮角速度或角比的乘积。当热容量比率大于5时,通过可用的经验相关性与通过单步变化实验获得的显着性有效性的比较结果表明,结果的差异小于3%。结论是,由于简单,准确和实用,由于单步转换实验的成本较低,因此,如果确定热轮和小型测试单元的流道几何形状和雷诺数,则确定在指定转速下运行的热轮的有效性是首选方法。

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  • 作者单位

    Department of Mechanical Engineering University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada;

    Department of Mechanical Engineering University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada;

    Department of Chemical & Biological Engineering, University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada;

    Department of Mechanical Engineering University of Saskatchewan, 57 Campus Drive, Saskatoon, SK S7N 5A9, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat wheel; Sensible effectiveness; Transient test; Time constant;

    机译:热轮;合理的有效性;瞬态测试时间常数;

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