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Investigation on the waste heat air drying system with a bottom organic Rankine cycle

机译:底部有机兰尼速度循环废热风干系统的研究

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A waste heat air drying system, including a top closed air drying cycle and a bottom organic Rankine cycle (ORC), is proposed, considering the temperature matches during the humid air sensible heat and latent heat recovery processes. In the top air cycle, the waste heat is used as heat source. In the bottom ORC, the sensible heat and latent heat in the humid air of the top cycle are recovered to generate power and get rid of the moisture. The results showed two key parameters, including the working composition and the evaporating pressure of the bottom ORC, influence thermal matching of the humid air waste heat recovering process, and then on overall energy saving performance of the proposed system significantly. Using the zeotropic mixtures as working fluids of the bottom ORC is a better way with the air relative moisture content lower than 0.2, compared to that of using pure working fluids. While, using the pure working fluid is better with the air relative moisture content over 0.2. The optimal evaporating pressure of the bottom ORC is obtained, to achieve the maximal specific net power output and total thermal efficiency of the drying system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种废热空气干燥系统,包括顶部封闭式空气干燥循环和底部有机朗肯循环(ORC),考虑到潮湿的空气明智的热量和潜热回收过程中的温度匹配。在顶部空气循环中,废热用作热源。在底部逆转录中,回收顶循环的潮湿空气中的明智的热量和潜热以产生功率并摆脱水分。结果表明,两个关键参数,包括工作组合物和底部兽人的蒸发压力,影响潮湿空气废热回收过程的热匹配,然后显着提出了所提出的系统的总节能性能。与使用纯工作流体相比,使用ZeoTropic Mixtures作为底部ORC的工作流体是一种更好的方式,所述空气相对含水量低于0.2。虽然,使用纯工作液更好地具有超过0.2的空气相对水分含量。获得底部逆转的最佳蒸发压力,以实现干燥系统的最大特定净功率输出和总热效率。 (c)2017 Elsevier Ltd.保留所有权利。

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