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Simulation Model of Stratified Thermal Energy Storage Tank using Finite Difference Method

机译:利用有限差分法的分层热能储罐仿真模型

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Stratified TES tank is normally used in the cogeneration plant. The stratified TES tanks are simple, low cost, and equal or superior in thermal performance. The advantage of TES tank is that it enables shifting of energy usage from off-peak demand for on-peak demand requirement. To increase energy utilization in a stratified TES tank, it is required to build a simulation model which capable to simulate the charging phenomenon in the stratified TES tank precisely. This paper is aimed to develop a novel model in addressing the aforementioned problem. The model incorporated chiller into the charging of stratified TES tank system in a closed system. The model was developed in one-dimensional type involve with heat transfer aspect. The model covers the main factors affect to degradation of temperature distribution namely conduction through the tank wall, conduction between cool and warm water, mixing effect on the initial flow of the charging as well as heat loss to surrounding. The simulation model is developed based on finite difference method utilizing buffer concept theory and solved in explicit method. Validation of the simulation model is carried out using observed data obtained from operating stratified TES tank in cogeneration plant. The temperature distribution of the model capable of representing S-curve pattern as well as simulating decreased charging temperature after reaching full condition. The coefficient of determination values between the observed data and model obtained higher than 0.88. Meaning that the model has capability in simulating the charging phenomenon in the stratified TES tank. The model is not only capable of generating temperature distribution but also can be enhanced for representing transient condition during the charging of stratified TES tank. This successful model can be addressed for solving the limitation temperature occurs in charging of the stratified TES tank with the absorption chiller. Further, the stratified TES tank can be charged with the cooling energy of absorption chiller that utilizes from waste heat from gas turbine of the cogeneration plant.
机译:分层TES罐通常用于热电联产厂。分层的TES罐简单,成本低,高性能等于或优越。 TES罐的优势在于它能够从峰值需求要求转换能源使用情况。为了提高分层TES罐中的能量利用,需要建立一个模拟模型,该模拟模型能够精确地模拟分层的TES罐中的充电现象。本文旨在在解决上述问题方面开发一种新型模型。该模型在封闭系统中掺入了分层TES罐系统的充电。该模型以一维类型开发,涉及传热方面。该模型涵盖了主要因素对温度分布的劣化,即通过罐壁传导,冷却和温水之间的导通,对充电初始流动的混合效果以及周围的热量损失。基于利用缓冲概念理论的有限差分方法开发了仿真模型,并以明确的方法解决了。使用从热电联产厂中操作分层的TES罐获得的观察数据来执行仿真模型的验证。能够代表S曲线图案的模型的温度分布以及在达到完全条件后模拟充电温度降低。所观察到的数据和高于0.88的型号之间的确定值系数。这意味着该模型具有模拟分层TES罐中的充电现象的能力。该模型不仅能够产生温度分布,而且还可以增强用于在分层TES罐充电期间表示瞬态状态。该成功模型可以解决,以解决利用吸收冷却器的分层TES罐充电时发生的限制温度。此外,分层的TES罐可以充电具有吸收冷却器的冷却能量,其利用来自热电厂的燃气涡轮机的废热。

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