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Numerical simulation of radiation intensity of a long-endurance UAV exhaust system with 2-D nozzle

机译:用2-D喷嘴的长耐久性UAV排气系统辐射强度的数值模拟

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Exhaust system is the most important infrared radiation source of a long-endurance UAVand the shape of the nozzle contribute to the infrared radiation characteristics of exhaust system. This paper built a 2-D nozzle and use ANSYS14.5 simulated the temperature filed of the plume. And then, spectral infrared radiation characteristics of the plume were obtained by the single band C-G approximation method. Finally, the infrared radiation intensity distribution of the exhaust system of the 2-D nozzle in different planes is obtained. The results show:The infrared radiation of the plume in wide side detection surface is far greater than the narrow side; The infrared radiation of the nozzle in wide side detection surface is smaller than the narrow side; The infrared radiation of the exhaust system in wide side detection surface is smaller than the narrow side. The results maybe contribute to the further study of the infrared radiation characteristics of the long-endurance UAV.
机译:排气系统是最重要的红外辐射源的长耐久性无人,喷嘴的形状有助于排气系统的红外辐射特性。本文建立了一个2-D喷嘴,并使用ANSYS14.5模拟羽流衬的温度。然后,通过单带C-G近似方法获得羽流的光谱红外辐射特性。最后,获得了不同平面中的2-D喷嘴的排气系统的红外辐射强度分布。结果表明:宽侧检测表面羽流的红外辐射远远大于窄侧;宽侧检测表面中喷嘴的红外辐射小于窄侧;宽侧检测表面中排气系统的红外辐射小于窄侧。结果可能有助于进一步研究长耐久性无人机的红外辐射特性。

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