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721.
Differently from traditional integration satellites, the modular satellites consist of several structurally independent modules and the heat dissipation is unevenly distributed, while the interface between modules should support repeatable connection separating. Therefore, the traditional thermal control design, which supports the independent heat dissipation of an integration satellite, cannot meet the thermal control requirements of the modular satellite. In this paper the modular thermal control technology is proposed. The carbon nanotube array on metal substrate is used as the thermal interface of the modules to realize the separable cross module heat transfer. The internal surface of structural panels is coated by graphene film to enhance the internal heat transfer in the modules with limited internal space. The smart thermal control coating is used at all the heat rejection surfaces to suppress the orbital heat flux variations. By using the technology, the thermal connection of the assembly and reconstruction system is built and the synergistic heat dissipation of the whole satellite is achieved. As to validate the proposed technology, the finite element model of the circular low earth orbit satellite is established and the in orbit temperature in the extreme working conditions is simulated. The result indicates that the modular thermal control technology proposed in this paper can satisfy the thermal control demand of the modular satellite. 相似文献
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本文对贴地飞行时的旋翼进行了流场显示和桨盘处下洗速度测量的实验研究。揭示并研究了环流和地面涡现象及其对旋翼平面下洗速度分布的影响,指出了旋翼贴地飞行时拉力、力矩等剧烈变化的原因。 相似文献
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基于频域的振动控制对于结构动力学十分重要,因此本文研究了一种基于极点配置法的频域振动主动控制理论.由于压电智能结构在振动控制领域具有令人满意的性能,并且宏观纤维复合材料(Macro?fiber compos?ite,MFC)具有高灵敏度和可变形性,本文使用MFC片并基于极点配置法设计控制方法,可以人为地设计梁的固有频率... 相似文献
726.
Transient performance and intelligent combination control of a novel spray cooling loop system 总被引:2,自引:1,他引:1
Effective thermal control systems are essential for the reliable working of insulated gate bipolar transistors (IGBTs) in many applications. A novel spray cooling loop system with integrated sintered porous copper wick (SCLS-SPC) is proposed to meet the requirements of higher device level heat fluxes and the harsh environments in some applications such as hybrid, fuel cell vehicles and aerospace. Fuzzy logic and proportional-integral-derivative (PID) policies are applied to adjust the electronic temperature within a safe working range. To evaluate the thermal control effect, a mathematical model of a 4-node thermal network and pump are established for predicting the dynamics of the SCLS-SPC. Moreover, the transient response of the 4 nodes and vapor mass flowrate under no control, PID and Fuzzy-PID are numerically investigated and discussed in detail. 相似文献
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