Design of Hybrid Energy System for Railway Application (Case Study of People Mover System in Doha, Qatar)

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Abstract

This paper presents the conceptual design of hybrid energy system used in railway application. The hybrid system with batteries and energy storage double-layer capacitor is a new technology that is used under extreme climatic conditions, especially in daytime temperature up to 50°C, high relative humidity, dust and heavy rain. It is a combination of double-layer capacitors and traction batteries. It draws power both externally and from braking energy. In order to reduce CO2 emissions to the environment, energy-saving drives and energy storage are used. Also, in public transportation, Sitras Hybrid Energy System (HES), hybrid energy storage system for trams, has been developed which combines a double-layer capacitor with a nickel-metal hydride battery. The storage not only allows driving without overhead lines, it also enables braking energy to be recovered. A reliable cooling system is required to ensure that the performance of the battery and the capacitor storage is maintained for as long as possible. The results of finite element model showed the robustness for railway application. The computational model refers to proof of static and dynamic strength in accordance with EN12663. A cooling system for a tram using this innovative technology was designed and qualified for the "Qatar Education City People Mover System (PMS)" project.
铁路应用混合能源系统设计(以卡塔尔多哈客运系统为例)
本文介绍了用于铁路的混合能源系统的概念设计。电池和储能双层电容器的混合系统是一项新技术,可在极端气候条件下使用,特别是在白天温度高达50°C,高相对湿度,灰尘和大雨的情况下。它是双层电容器和牵引电池的组合。它从外部和制动能量中获取能量。为了减少对环境的二氧化碳排放,采用了节能驱动和储能。此外,在公共交通领域,已经开发了Sitras混合能源系统(HES),即电车混合能源存储系统,它将双层电容器与镍金属氢化物电池相结合。这种储能系统不仅可以在没有架空线路的情况下行驶,还可以回收制动能量。需要可靠的冷却系统,以确保电池和电容器存储的性能保持尽可能长的时间。结果表明,有限元模型具有较好的鲁棒性。计算模型参照EN12663的静、动强度证明。使用这种创新技术的有轨电车冷却系统被设计并通过了“卡塔尔教育城市人民移动系统(PMS)”项目的认证。
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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