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Individual and integrated assessment of topological parameters influencing the melting behavior of a triple concentric tube heat exchanger

机译:影响三重同心管热交换器熔化行为的拓扑参数的个人和综合评估

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摘要

With surging demand for energy and associated limitations, resorting to more novel alternatives is of highpriority. Simultaneous with this course of action, researchers are on track to mitigate intermittency of such resources by leveraging phase change materials (PCMs) in storage systems. Despite possessing multiple benefits, especially their capability of retaining energy in high densities, PCMs tend to lack adequate amounts of thermal conductivity resulting in time-consuming transition procedures. To tackle this problem, this study is fixated on three-pronged parameters pertaining to fins design, inclination of fins and eccentricity of inner tube in a bid to distinguish their individual and integrated applications in a melting process within a triple concentric tube heat exchanger (TCTHX). A numerical approach using Ansys Fluent 16.0 has been exercised for simulation of given system before which the data ranking with another authentic study served as the validation of present work. The results provided by 8 categorized cases underlined the importance of natural convection as eccentricity brough about a surge of 14% compared to concentric scenario, although finned cases outstripped all unfinned ones. As with eccentricity and fin, fins orientation proved influential as minor modifications to finned cases led to appreciable enhancements of 66% and 68% when set against the original plain case.
机译:随着对能源和相关局限性的潮流需求,诉诸更多的新颖替代品是高度的。通过本课程同时,研究人员正在追踪通过在存储系统中利用相变材料(PCM)来减轻这些资源的间歇性。尽管具有多种益处,但特别是它们在高密度保持能量的能力,但PCM往往缺乏足够的导热率导致耗时的过渡程序。为了解决这个问题,本研究旨在解决与翅片设计,内管的翅片和内管的偏心倾斜度的三管齐下参数固定,以区分其个体和集成应用在三重同心管热交换器内(TCTHX )。使用ANSYS流畅16.0的数值方法已经锻炼了给定系统的仿真,并在其与另一个真实的研究中排名的数据排名作为当前工作的验证。 8个分类案例提供的结果强调了自然对流的重要性,因为与同心情景相比,偏心频率大约14%的浪涌,尽管罚款案件超出了所有未共同的情况。与偏心和鳍一样,鳍片取向被证明是对罚款案件的微小修改导致了对原始普通案件的明显增强导致66%和68%的明显增强。

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