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PEM single fuel cell as a dedicated power source for high-inductive superconducting coils

机译:PEM单燃料电池作为高电感超导线圈的专用电源

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In practice, the voltage of a hydrogen oxygen fuel cell is around 1 V at open circuit and from 0.6 V to 0.7 V at full rated load and it can be considered as a low-voltage energy source. Moreover, preliminary investigations undertaken on a single proton exchange membrane fuel cell (PEMFC) highlighted its behavior as a DC current source, that can be directly controlled by the H-2 flow rate when the operating point is at very low voltage. In this paper, we present an innovative application of PEMFC that relies on taking advantage of both low voltage level and current source operating mode to feed a high inductive superconducting coil. Such a coil has no resistance and among others, is very sensitive to current ripples. Thus, specific power supplies are designed to feed them but they exhibit in most cases a huge volume and/or a low energy yield. Connecting a superconducting coil to a PEMFC implies to operate in short-circuit, which is an unusual use of PEMFC. To this end, requirements of such an application are defined, by making use of a PEMFC electrical model based on a 1D analog representation of mass transport phenomena. This model, that enables to take into account the influence of gas supply conditions, notably diffusion limit operation, is directly implemented in a standard simulation software used in electrical engineering. Then, simulation results and experimental results obtained by supplying a 10 H superconducting coil cooled by liquid helium by means of a single 100 cm(2) PEMFC are compared and discussed.
机译:实际上,氢氧燃料电池的电压在开路时约为1 V,在全额定负载时为0.6 V至0.7 V,可以认为它是低压能源。此外,对单个质子交换膜燃料电池(PEMFC)进行的初步研究强调了其作为直流电流源的行为,当工作点处于非常低的电压时,可以直接由H-2流量控制。在本文中,我们介绍了PEMFC的创新应用,该应用依赖于利用低电压电平和电流源工作模式来馈入高电感超导线圈。这样的线圈没有电阻,并且对电流波动非常敏感。因此,特定的电源被设计为馈电,但是它们在大多数情况下表现出巨大的体积和/或低的能量产出。将超导线圈连接到PEMFC意味着会在短路下运行,这是PEMFC的不寻常用法。为此,通过使用基于传质现象的一维模拟表示的PEMFC电气模型来定义此类应用程序的要求。该模型可以考虑供气条件(尤其是扩散极限运行)的影响,可以直接在电气工程中使用的标准仿真软件中实施。然后,比较并讨论了通过单个100 cm(2)PEMFC提供由液氦冷却的10 H超导线圈得到的仿真结果和实验结果。

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