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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Dynamic study of steam generation from low-grade waste heat in a zeolite-water adsorption heat pump
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Dynamic study of steam generation from low-grade waste heat in a zeolite-water adsorption heat pump

机译:沸石-水吸附热泵中低级废热产生蒸汽的动态研究

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摘要

A novel zeolite water adsorption heat pump system based on a direct-contact heat exchange method to generate steam from low-grade waste gas and water has been proposed and examined experimentally. Superheated steam (200 degrees C, 0.1 MPa) is generated from hot water (70-80 degrees C) and dry air (100-130 degrees C). A dynamic model for steam generation process is developed to describe local mass and heat transfer. This model features a three-phase calculation and a moving water gas interface. The calculations are carried out in the zeolite water and zeolite gas regions. Model outputs are compared with experimental results for validation. The thermal response inside the reactor and mass of steam generated is well predicted. Numerical results show that preheat process with low-temperature steam is an effective method to achieve local equilibrium quickly, thus generation process is enhanced by prolonging the time and increasing mass of the generated steam. Besides, high-pressure steam generation up to 0.5 MPa is possible from the validated dynamic model. Future work could be emphasized on enhancing high-pressure steam generation with preheat process or mass recovery operation. (C) 2014 Elsevier Ltd. All rights reserved.
机译:提出并研究了一种基于直接接触热交换法从低品位废气和水中产生蒸汽的新型沸石吸水热泵系统。热水(70-80摄氏度)和干燥空气(100-130摄氏度)产生过热蒸汽(200摄氏度,0.1 MPa)。建立了用于蒸汽产生过程的动态模型来描述局部质量和传热。该模型具有一个三相计算和一个移动的水煤气界面。该计算是在沸石水和沸石气体区域中进行的。将模型输出与实验结果进行比较以进行验证。可以很好地预测反应堆内部的热响应和产生的蒸汽量。数值结果表明,低温蒸汽的预热过程是一种快速达到局部平衡的有效方法,因此,通过延长时间和增加所产生的蒸汽的质量,可以增强发电过程。此外,通过验证的动力学模型可以产生高达0.5 MPa的高压蒸汽。可以强调未来的工作是通过预热过程或物料回收操作来提高高压蒸汽的产生。 (C)2014 Elsevier Ltd.保留所有权利。

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