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Modeling and simulation of thermal and hydrodynamic performance of heat exchangers for automotive applications - Part II: Evaporators

机译:汽车应用热交换器热电动力学性能的建模与仿真 - 第二部分:蒸发器

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A computer program has been developed to optimize the performance of finned tube evaporators. The developed program is used to predict the thermal and hydrodynamic performance of finned tube evaporators. The model is based on a steady-state finite difference model. The correlations for predicting the heat transfer and pressure drop are used from the literature. Experimental data is used to validate the developed model for a finned tube evaporator with R-12 as the working fluid. The simulated performance for heat transfer rate is within ±8%; and refrigerant pressure drop is within ±10% of the experimental data. The simulated data shows that 66% of the heat transfer area is occupied by flow boiling; 23% by the dryout region; and remaining 11% is controlled by single-phase vapor flow. Work is continuing on predicting the performance of serpentine and laminate type evaporators with R-134a as the working fluid.
机译:已经开发了一种计算机程序以优化翅片管蒸发器的性能。开发的程序用于预测翅片管蒸发器的热和流体动力学性能。该模型基于稳态有限差模型。用于预测传热和压降的相关性来自文献。实验数据用于验证具有R-12作为工作流体的翅片管蒸发器的开发模型。用于传热速率的模拟性能在±8%范围内;制冷剂压降在实验数据的±10%范围内。模拟数据表明,66%的传热面积被流沸腾占用;干号区域23%;并且剩余11%由单相蒸汽流量控制。继续预测蛇纹石和层压型蒸发器与R-134a作为工作流体的性能。

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