飞机点火器等离子体射流放电的数值与实验研究

IF 1.7 4区 工程技术 Q2 ENGINEERING, AEROSPACE Journal of Propulsion and Power Pub Date : 2023-08-24 DOI:10.2514/1.b38815
Yihao Tang, Joo-Heon Kim, Brandon A. Sforzo, R. Scarcelli, V. Raman
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引用次数: 0

摘要

采用高保真度数值模拟和X射线照相测量方法研究了飞机等离子体射流点火器的火花放电。这里的目标问题是由电火花引入的热气体在受限的点火器腔内的热膨胀,最终演变成高温内核的脉冲射流。将一套改编自现有内燃机火花塞放电策略的综合模型扩展到目标问题,包括能量沉积、等离子体反应、热力学性质和热损失的建模。进行了一系列验证和参数研究。发现内核尺寸对由辐射和留在放电腔内的热气引起的热损失敏感,而不是对放电腔内壁的热传导敏感。根据击穿后电弧的强制形状,火花核可能是偏心的、倾斜的和相当不对称的。这些特征以前在研究此类点火器配置时没有考虑过,可能对点火过程产生一阶影响。如果热损失模型和电弧形状设置得当,数值结果在火花放电后不同阶段的核尺寸、形状和速度方面与实验结果具有定量可比性。
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Numerical and Experimental Study of an Aircraft Igniter Plasma Jet Discharge
The spark discharge of an aircraft plasma jet igniter is studied using high-fidelity numerical simulations and X-ray radiography measurements. The target problem here features the thermal expansion of hot gas introduced by the electric spark within a confined igniter cavity, which eventually evolves into a pulsed jet of a high-temperature kernel. A comprehensive set of models adapted from existing strategies for internal combustion engine spark plug discharge is extended to the target problem, including the modeling of energy deposition, plasma reactions, thermodynamic properties, and heat losses. A series of validation and parameter studies are performed and presented. The kernel size is found to be sensitive to heat losses arising from radiation and hot gas remained within the discharge cavity, rather than heat conduction to the wall in the discharge cavity. Depending on the enforced shape of the post-breakdown electric arc, the spark kernel can be off-centered, tilted, and considerably asymmetric. These features have been previously not considered when studying such igniter configurations and may have a first-order impact on the ignition process. Provided a proper setup of the heat loss models and electric arc shape, the numerical results are quantitatively comparable to the experimental results in terms of the kernel size, shape, and velocity throughout different stages after the spark discharge.
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来源期刊
Journal of Propulsion and Power
Journal of Propulsion and Power 工程技术-工程:宇航
CiteScore
4.20
自引率
21.10%
发文量
97
审稿时长
6.5 months
期刊介绍: This Journal is devoted to the advancement of the science and technology of aerospace propulsion and power through the dissemination of original archival papers contributing to advancements in airbreathing, electric, and advanced propulsion; solid and liquid rockets; fuels and propellants; power generation and conversion for aerospace vehicles; and the application of aerospace science and technology to terrestrial energy devices and systems. It is intended to provide readers of the Journal, with primary interests in propulsion and power, access to papers spanning the range from research through development to applications. Papers in these disciplines and the sciences of combustion, fluid mechanics, and solid mechanics as directly related to propulsion and power are solicited.
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