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Numerical study of an external device for the improvement of the thermal stratification in hot water storage tanks

机译:用于改善热水储罐中热分层的外部装置的数值研究

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In this work, we study the operation of a water heater storage tank using CFD modelling and analyse its limitations in order to propose a redesign that improves its characteristics. The study method is based on calculating the main variables that affect the thermal performance using the finite volume method. With this method, the Navier-Stokes equations are applied to calculate the internal movements of the fluid and its heat exchange with the coil. A determining factor for the operation of a water heater tank is natural convection, which is solved by means of the Boussinesq approximation. Different reservoir simulations are carried out in continuous operation mode (stationary) and in heating mode (transient). In both cases, the results show very homogeneous heating, which means poor temperature stratification. As an alternative for improvement, a redesign of the system is proposed by means of an auxiliary tank where the heating coil is located, which injects the hot water, at different heights, into the main tank. Several simulations of this redesign are carried out with different configurations in order to achieve better temperature stratification, reduce the heating time and maintain the outlet temperature of the domestic hot water (DHW) between 45 and 60 degrees C. As a result, the redesign significantly improves the stratification of temperatures and reduces the heating time necessary to obtain a DHW temperature of 45 degrees C from 45 to 8 min.
机译:在这项工作中,我们使用CFD建模研究热水器储罐的操作,并分析其限制,以提出改善其特征的重新设计。该研究方法是基于计算使用有限体积法影响热性能的主变量。利用这种方法,采用Navier-Stokes方程来计算流体的内部运动及其与线圈的热交换。用于热水器箱的操作的确定因素是自然对流,通过Boussinesq近似来解决。不同的储层模拟是在连续操作模式(静止)和加热模式(瞬态)中进行的。在这两种情况下,结果表明非常均匀的加热,这意味着温度差。作为改进的替代方案,通过辅助罐提出了一种系统的重新设计,其中加热线圈位于加热线圈,该罐在不同的高度以不同的高度喷射到主罐中。通过不同的配置进行了多次模拟,以实现更好的温度分层,减少加热时间并将家庭热水(DHW)的出口温度保持在45至60摄氏度之间。结果,重新设计显着改善温度的分层并减少了从45至8分钟的45℃的DHW温度所需的加热时间。

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