首页> 外文会议>ESA SP-567; International Conference on Solar Power from Space(SPS'04) Together with International Conference on Wireless Power Transmission(WPT'5); 20040630-0702; Granada(ES) >A STUDY ON THE FEASIBILITY OF HEAT TRANSFER AND TRANSPORT FROM GENERATOR/TRANSMITTER COMBINED UNITS OF ASSUMED 10MW SPACE SOLAR POWER SYSTEM
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A STUDY ON THE FEASIBILITY OF HEAT TRANSFER AND TRANSPORT FROM GENERATOR/TRANSMITTER COMBINED UNITS OF ASSUMED 10MW SPACE SOLAR POWER SYSTEM

机译:假设的10MW空间太阳能发电系统的发电机/发电厂组合机组传热和输运的可行性研究

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摘要

Feasibility of heat transfer and transport is analyzed for the Space Solar Power System (SSPS) of an assumed 10MW power generation with an idealized generator/ transmitter combined structures. Diameter of the power satellite is 200m, where sunlight is condensed at a magnification of three to reduce the satellite size. Application of boiling and two-phase flow system is a promising method to transport a large amount of thermal energy because it accompanies the transportation of latent heat. The feasibility of thermal energy management was confirmed using boiling and two-phase flow for the 10MW class model, while the enlargement of the power up to 1GW is accompanied by the difficulty of heat removal with high heat generation density from a large area where no technology was developed yet including those for the terrestrial application. In the present research, performance of an example of thin cold plate was tested as a reference to evaluate the performance of cold plates to be developed for boiling and two-phase flow. In addition, a technique to increase the critical heat flux, which gives a limitation of heat removal, was tested and discussed on the basis of experimental results.
机译:对于空间太阳能发电系统(SSPS),假设其具有理想的发电机/发射器组合结构,假设发电量为10兆瓦,则分析了传热和运输的可行性。电力卫星的直径为200m,在此处将太阳光以三倍的比例聚光以减小卫星尺寸。沸腾和两相流系统的应用是一种潜在的传输大量热能的方法,因为它伴随着潜热的传输。对于10MW级模型,使用沸腾和两相流确认了热能管理的可行性,而功率增大至1GW则伴随着难以从没有技术的大区域进行高热量产生密度的散热的困难。开发了包括地面应用的软件。在本研究中,对薄冷板实例的性能进行了测试,以评估要开发用于沸腾和两相流的冷板的性能。另外,在实验结果的基础上测试并讨论了增加临界热通量的技术,该技术限制了散热。

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