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Behavior of hydrogen hollow-cone spray depending on the ambient pressure

机译:根据环境压力的氢气空心锥喷雾的行为

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Hydrogen as a fuel is feasible for future sustainable mobility. Because hydrogen has a low-volumetric energy density, high-pressure hydrogen is required for high-speed fuel injection. The objective of this research is analysis of the hydrogen spray behavior depending on the ambient pressure. A high-pressure (10 MPa) hydrogen spray is visualized in a constant volume combustion chamber in which the ambient pressure and injection duration are varied. The schlieren method is utilized to capture the hydrogen spray with a high-speed camera. The characteristics of the hydrogen hollow-cone spray are investigated using high-speed spray images. High ambient pressure decreases the vertical extent of the spray penetration and its area. The centroid of the spray is contracted toward the axis of the injector until the ambient pressure reaches 2.0 MPa, and the pressure difference between the inner and outer sections of the spray is larger for high ambient pressures. At high ambient pressure, the heterogeneity of the hydrogen mixture increases. Owing to the aerodynamic effect, the contracted spray reconstructs the main hydrogen plume at the center of the injector. Moreover, hydrogen travels toward the top of the injector because of the generation of a vortex at the inner side of the spray. Based on the findings, hydrogen direct injection can contribute to sustainable mobility in the future. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氢气作为燃料可行的可持续移动性是可行的。因为氢具有低容量的能量密度,所以高压氢气是高速燃料喷射所需的。该研究的目的是根据环境压力分析氢气喷射行为。高压(10MPa)氢气喷雾在恒定体积燃烧室中可视化,其中环境压力​​和注射持续时间变化。 Schlieren方法用于用高速相机捕获氢气喷雾。使用高速喷雾图像研究了氢气空心锥喷射的特性。高环境压力降低了喷涂渗透率的垂直程度及其区域。喷雾的质心朝向注射器的轴线缩小,直到环境压力达到2.0MPa,并且喷雾的内部和外部之间的压力差对于高环境压力较大。在高环境压力下,氢气混合物的异质性增加。由于空气动力学效果,收缩的喷雾在注射器的中心重建了主要氢气羽毛。此外,由于在喷雾的内侧产生涡流,氢气朝向喷射器的顶部行进。基于调查结果,氢直接注射可导致未来可持续的流动性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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