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    • 1. 发明申请
    • METHOD FOR DEVELOPING NUCLEAR FUEL AND ITS APPLICATION
    • 发展核燃料的方法及其应用
    • WO2007120217A2
    • 2007-10-25
    • PCT/US2006045213
    • 2006-11-22
    • POPA-SIMIL LIVIU
    • POPA-SIMIL LIVIU
    • G21C3/00
    • G21C3/02G21C3/20G21C3/40G21Y2002/201G21Y2002/304G21Y2004/30Y02E30/38
    • The present invention provides a device (1250) that includes a cylindrical tube (1215), and a drain tube (1211) disposed inside having openings along its length for receiving drain fluid (1254). The device (1250) also includes means forming the fuel layer (1252) disposed within the operative portion of the tube. The fuel layer (1252) generates fission products and has a thickness smaller than the fission product range. Drain fluid (1254) passes over the surfaces of the fuel layer (1252), collects the fission products for discharge therefrom. The fuel hetero-structure is formed from the fuel layer (1902), an insulating material and a liquid. The insulating material has a repetitive structure that includes at least three layers (1904, 1906, 1908) and interacts with the fission products (1924) to generate electricity. One of the layers generates electrons showers (1928) that are converted into heat or electricity.
    • 本发明提供了一种装置(1250),其包括圆柱形管(1215)和排放管(1211),排放管(1211)设置在其内部,具有沿其长度的开口,用于接收排放流体(1254)。 装置(1250)还包括形成设置在管的操作部分内的燃料层(1252)的装置。 燃料层(1252)产生裂变产物,其厚度小于裂变产物范围。 排放流体(1254)经过燃料层(1252)的表面,收集裂变产物以从其中排出。 燃料异质结构由燃料层(1902),绝缘材料和液体形成。 绝缘材料具有包括至少三层(1904,1906,1908)并与裂变产物(1924)相互作用以发电的重复结构。 其中一层产生电子淋浴(1928),转换成热或电。
    • 2. 发明申请
    • MULTI-BAND TERAHERTZ RECEIVER AND IMAGING DEVICE
    • 多带TERAHERTZ接收机和成像设备
    • WO2007126706A2
    • 2007-11-08
    • PCT/US2007/007267
    • 2007-03-24
    • POPA-SIMIL, Liviu
    • POPA-SIMIL, Liviu
    • H01Q19/06
    • H01Q19/30
    • Multiband polarized receiver-emitter THz domain visualization device that includes a group of elemental receiver units made from a resonant system sensitive to frequency and polarization, a micro-bead solid-state voltage amplifier in the gate of a differential FET system. The detection is based on the carrier perturbation method detected by a set of double gate comparator circuits that further generates an integrated signal driven to a digital analog converter. The signal from here is accessing event-based memory used to generate the 3D images. Multiple detection modules are coupled into a triangular detection element detecting a multitude of frequencies, in a cascade of bands from 2 mm to 1 micron. This THz chromatic detector is integrated in a surface morph array, or in an image area of a focusing device generating a pixel of information with band, amplitude, polarization and time parameters, driving to a complex 3D substance level visualizations.
    • 多频偏振接收发射器THz域可视化装置,其包括由对频率和极化敏感的谐振系统制成的一组元件接收器单元,在差分FET系统的栅极中的微珠固态电压放大器。 检测是基于由一组双栅极比较器电路检测的载波扰动方法,其进一步产生驱动到数字模拟转换器的积分信号。 来自这里的信号是访问用于生成3D图像的基于事件的内存。 多个检测模块耦合到检测多个频率的三角形检测元件中,从2毫米到1微米的级联级联。 这种THz色度检测器被集成在表面变形阵列中,或者在聚焦装置的图像区域中,产生具有带,振幅,极化和时间参数的信息像素,从而驱动到复杂的3D物质水平的可视化。