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Research on Active Heat Dissipation Experimental System for Focal Plate

机译:焦板主动散热实验系统的研究

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The integrated cooling system with multi curved composite grooves on the surface of focal plate was designed to solve the problem that high-density heat resource is distributed on the focal plate. The new active heat dissipation experimental system was proposed considering the wide ambient temperature variation around the focal plate. The temperature field and deformation of the focal plate in the integrated cooling system under the environment of large temperature difference were analyzed by the simulation, and the active heat dissipation system for the focal plate was achieved by precise temperature control of the cooling medium. Meanwhile, the influence of active heat dissipation system on telescope observation was analyzed by the simulation. The simulation and experimental results suggested the integrated cooling system of focal plate can ensure the temperature of the focal plate constant and the deformation error of the focal plate is within the permitted range under the large temperature difference. And the new active heat dissipation system of focal plate can have a fast response speed and good adjustment ability in the condition of the varied ambient temperature, meanwhile, can effectively reduce the effect on the telescope observation.
机译:设计具有焦板表面上的多弯曲复合槽的集成冷却系统,以解决高密度热资源在焦板上分布的问题。提出了新的主动散热实验系统,考虑到焦板周围的宽环境温度变化。通过模拟分析了在大温差的环境下的集成冷却系统中焦平板的温度场和变形,并通过精确的冷却介质进行精确温度控制来实现焦板的有源散热系统。同时,通过模拟分析了积极散热系统对望远镜观察的影响。模拟和实验结果表明,焦板的集成冷却系统可以确保焦板常数的温度和焦板的变形误差在大的温差下的允许范围内。并且,焦板的新型活性散热系统可以在不同环境温度的情况下具有快速响应速度和良好的调节能力,同时可以有效地降低对望远镜观察的影响。

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