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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >High temperature solid media thermal energy storage system with high effective storage densities for flexible heat supply in electric vehicles
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High temperature solid media thermal energy storage system with high effective storage densities for flexible heat supply in electric vehicles

机译:高温实心介质热能储能系统,具有高效存储密度,用于电动车辆柔性供热

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摘要

One major challenge for the successful transformation of the transportation system towards electromobility is strongly linked to its maximum range. Such range reducing impacts emerge exemplary during cold winter days, where electric energy is used from the battery to heat the interior. In spite of significant improvements in energy density of battery systems, alternative ideas for suitable thermal management concepts are necessary to solve the conflict between traction and heating. To overcome this disadvantage a novel concept based on an electrical heated sensible solid media thermal energy storage system is outlined. Central elements include a high efficient thermal insulation concept and a bypass operation system to allow high effective energy densities and simultaneously a flexible supply of thermal energy with defined specifications during thermal discharging. For this purpose, simulation studies regarding the insulation concept and the geometric design of the thermal energy storage for two feasible material options were conducted. Under a wide range of solutions, promising designs with high effective energy densities, low parasitic losses and high thermal discharging power were identified.
机译:成功转变运输系统朝向电动性的一个主要挑战与其最大范围有着强烈的联系。在寒冷的冬季时,降低影响的这种范围是在寒冷的冬季的情况下出现示例,其中电能从电池使用电能以加热内部。尽管电池系统的能量密度显着改善,但有适当的热管理概念的替代思想是解决牵引和加热之间的冲突。为了克服这一缺点,概述了基于电加热的明智的固体介质热能存储系统的新颖概念。中央元件包括高效的保温概念和旁路操作系统,以允许高有效的能量密度,并在热放电期间同时具有具有定义规格的柔性热能供应。为此目的,进行了关于绝缘概念和用于两个可行材料选项的热能存储的几何设计的仿真研究。在广泛的解决方案下,鉴定了具有高有效能量密度,低寄生损耗和高热放电功率的有前途的设计。

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