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Flow and conjugate heat transfer with surface radiation characteristics of a real-scale infrared suppression device with conical funnels

机译:具有锥形漏斗的真正红外抑制装置的表面辐射特性的流动和共轭传热

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The precise flow and heat transfer aspects in an infrared suppression (IRS) device are challenging because of the complicated flow features. The suction of cold ambient air and subsequent mixing with the hot exhaust gas from the turbine in cargo/naval ships happens in the IRS device. In the present research, the thermo-fluid characteristics of a two-dimensional axisymmetric IRS system consisting of conical funnels stacked one above the other are meant to study. Numerical simulations are performed for the real-scale IRS unit by solving the equations of mass, momentum, energy, and radiation in the computational domain surrounding the IRS device. In this study, the effect of conducting funnel walls with surface radiation is considered. The impact of the number of funnels on mass intake and the device outlet temperature is analyzed. The results show that the maximum air intake and minimum outlet temperature can be achieved using five funnels. The mass intake and device outlet temperature are also affected by funnel-overlapping and nozzle-overlapping. The maximum air intake and minimum outlet temperature are obtained by zero funnel-overlapping and zero nozzle-overlapping conditions. When the adia-batic funnel is replaced by conducting funnels with surface radiation, the increment in the mass intake and decrement in outlet temperature is observed. The impact of funnel wall inclination and the type of guide vanes are also discussed.
机译:红外抑制(IRS)装置中的精确流动和传热方面是由于复杂的流量特征而具有挑战性。冷环境空气的抽吸和随后与来自货物/海军船舶中的涡轮机的热废气混合在IRS装置中。在本研究中,由堆叠在另一个上方堆叠的锥形漏斗组成的二维轴对称IRS系统的热流体特性旨在研究。通过求解IRS装置的计算域中的质量,动量,能量和辐射方程来对实际IRS单元进行数值模拟。在该研究中,考虑了导电具有表面辐射的漏斗壁的效果。分析了漏斗数对大规模摄入量和器件出口温度的影响。结果表明,使用五个漏斗可以实现最大的进气和最小出口温度。通过漏斗重叠和喷嘴重叠的粉碎和装置出口温度也受到影响。通过零漏斗重叠和零喷嘴重叠条件获得最大进气和最小出口温度。当通过用表面辐射传导漏斗替换ADIA-BATIC漏斗时,观察到批量摄入量的增量和出口温度下降。还讨论了漏斗壁倾斜的影响和导叶的类型。

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