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An Experimental Investigation of the Influence of Gas and Solid Particle Interaction on the Heat Transfer Effectiveness of a Falling-Bed Heat Exchanger

机译:气体与固体颗粒相互作用对降床式换热器传热效率影响的实验研究

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摘要

The objective of this investigation is to quantify and understand the performance of falling-bed heat exchangers. Experimental steady-state heat transfer data, whose quality is demonstrated with an accurate energy balance between the gas and particle streams, are presented. Measured temperatures, pressures, and overall heat transfer rates are compared to predicted values from a one-dimensional analytical model, and the capabilities and deficiencies of the model are discussed. In addition, the effect of a particle distributor on the performance of the falling-bed heat exchanger is measured. While the model is shown to be unable to provide a quantitatively accurate prediction of the performance of the heat exchanger, it does provide an estimate of the maximum possible effectiveness of the heat exchanger. A simple particle distributor is shown to provide relatively poor effectiveness, while the use of a more complex distributor causes the effectiveness of the heat exchanger to approach the upper bound. The combination of experimental data and model results offers useful insight for developing falling-bed heat exchangers and provides a useful test case for future modeling efforts.
机译:这项研究的目的是量化和了解降床热交换器的性能。给出了实验稳态传热数据,该数据的质量通过气流与颗粒流之间的精确能量平衡得到证明。将测得的温度,压力和总传热速率与一维分析模型的预测值进行比较,并讨论了该模型的功能和不足。此外,还测量了颗粒分布器对降床热交换器性能的影响。虽然该模型无法显示出对热交换器性能的定量准确预测,但它确实提供了对热交换器最大可能有效性的估计。示出了简单的颗粒分配器提供相对较差的有效性,而使用更复杂的分配器使得热交换器的有效性接近上限。实验数据和模型结果的结合为开发降床换热器提供了有用的见识,并为将来的建模工作提供了有用的测试案例。

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