Mathematical Modeling of the Heat Generated through an Evaporator-Absorber Accompanied by Thermal Storage for the Solar Energy Applications

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY
F. Latrache, Z. Hammouch, K. Lamnaouar, B. Bellach, M. Ghammouri
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引用次数: 0

Abstract

An evaporator-absorber geometry allows the absorption of incident solar radiation andconverts it into thermal energy useful for the evaporation of a working fluid. The evaporator-absorberworks with two fluids: a heat transfer fluid transmitting heat to a working fluid, which, circulatesalong the thermal circuit composed of an evaporator, a turbine, a condenser and a pump. The aim ofthis research work is to analyze the heat transfer through the evaporator-absorber and to extract themathematical equations model the heat exchange process between the component elements of theevaporator-absorber: a serpentine tube, a working fluid and a cylindrical tube. In this case, theworking fluid is water, and the heat transfer fluid is air, which is heated by the thermal energyconverted from solar energy. The mathematical equations describing the heat transfer are extractedby using the nodal method and discretized by the finite difference method. Afterwards, the presentwork estimates the outlet temperature of each element of the evaporator-absorber and studies thestorage capacity of the cylindrical tube. Then, the water temperature distribution on the geometry ofthe evaporator and the required quantity of water and the number of spires to have a high outlettemperature of the water vapor are determined. As a result, the mathematical modeling estimated thatthe outlet temperature of the serpentine tube is higher than the outlet temperature of the water.Additionally, the temperature of the storage tube maintains its increase throughout the day. Thequality of the heat transfer in the serpentine tube is improved by placing the tube in a vertical positionand by adopting a lower volume of water compared to the maximum volume, which is supported bythis tube.
太阳能应用中蒸发器-吸收器伴蓄热产生热量的数学建模
蒸发器-吸收器的几何结构允许吸收入射的太阳辐射,并将其转化为对工作流体蒸发有用的热能。蒸发器-吸收器与两种流体一起工作:一种是传热流体,将热量传递给工作流体,工作流体沿着由蒸发器、涡轮机、冷凝器和泵组成的热回路循环。本研究工作的目的是分析蒸发器-吸收器的传热过程,并对蒸发器-吸收器的蛇形管、工作流体和圆柱形管组成元件之间的换热过程进行数学建模。在这种情况下,工作流体是水,传热流体是空气,空气被太阳能转化的热能加热。用节点法提取了描述传热的数学方程,并用有限差分法进行了离散。然后,本文对蒸发-吸收器各元件的出口温度进行了估算,并对柱状管的存储量进行了研究。然后,确定了蒸发器几何形状上的水温分布,并确定了高水汽出口温度所需的水量和塔尖数量。因此,通过数学模型估计,蛇形管的出口温度高于水的出口温度。此外,储存管的温度全天保持上升。通过将管置于垂直位置,并采用比最大体积更小的水,从而改善了蛇形管中的传热质量,这是由该管支撑的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.80
自引率
14.30%
发文量
62
期刊介绍: "International Journal of Engineering Research in Africa" is a peer-reviewed journal which is devoted to the publication of original scientific articles on research and development of engineering systems carried out in Africa and worldwide. We publish stand-alone papers by individual authors. The articles should be related to theoretical research or be based on practical study. Articles which are not from Africa should have the potential of contributing to its progress and development.
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