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    • 8. 发明公开
    • Gravitational wave generator utilizing coupled oscillators and methods for amplification of gravitational waves
    • Gekoppelte Oszillatoren verwendender Gravitationswellenerzeuger und Verfahren zurVerstärkungder Gravitationswellen
    • EP2233951A1
    • 2010-09-29
    • EP09156549.9
    • 2009-03-27
    • Elmarx Srl
    • Fontana, Giorgio
    • G01V7/00
    • G01V7/00
    • It is provided a use of a high vacuum chamber as an amplifier of a gravitational wave. Furthermore, it is provided a device for generating a gravitational wave, comprising a generator (10, 18) of an external energy; a primary vacuum chamber (20) with window (19) transparent for the external energy; a first vacuum pump (21) connected to the primary vacuum chamber (20) and configured to evacuate the primary vacuum chamber (20); a converting material (22, 12) for converting the external energy into gravitational waves, the converting material being disposed inside the primary vacuum chamber (20) such that the external energy illuminates the converting material (22); a second vacuum chamber (16, 23) used as an amplifier of the gravitational wave; and a second vacuum pump (24) connected to the second vacuum chamber (16, 23) and configured to evacuate the primary vacuum chamber (16, 23).
    • 提供了使用高真空室作为重力波的放大器。 此外,提供了一种用于产生重力波的装置,其包括具有外部能量的发电机(10,18) 具有用于外部能量透明的窗口(19)的初级真空室(20) 第一真空泵(21),其连接到所述主真空室(20)并被构造成抽空所述一次真空室(20); 所述转换材料设置在所述初级真空室(20)的内部,使得所述外部能量照射所述转换材料(22);所述转换材料(22,12)用于将所述外部能量转换成重力波。 用作重力波放大器的第二真空室(16,23); 以及连接到第二真空室(16,23)并构造成抽空一次真空室(16,23)的第二真空泵(24)。
    • 9. 发明公开
    • GEOPHYSICAL DATA PROCESSING SYSTEMS
    • 地球物理数据处理系统
    • EP2183620A2
    • 2010-05-12
    • EP08776032.8
    • 2008-07-24
    • Arkex Limited
    • DAVIES, Mark
    • G01V7/00
    • G01V7/00G01V11/00
    • We describe a method of processing geophysical data including at least measured potential field data from a potential field survey of a surveyed region of the earth to provide a three-dimensional representation of the underlying geology of said surveyed region, the method comprising: inputting terrain-corrected potential field data for said surveyed region, said potential field data comprising data for a range of spatial wavelengths, geological features at different depths in said surveyed region being associated with different wavelengths in said range of wavelengths; filtering said potential field data by spatial wavelength to generate a first plurality of filtered sets of potential field data, each relating to a respective wavelength or range of wavelengths, each targeting geological features at a different respective said depth; processing each said filtered set of potential field data, to identify a set of spatial features comprising one or both of line spatial features and point spatial features in each said filtered set of potential field data, and to generate a set of plot data for each said filtered set of potential field data, a said set of plot data representing said identified set of spatial features for a said depth targeted by said filtering; and combining said sets of plot data to generate three-dimensional map data providing a three-dimensional representation of said underlying geology of said surveyed region.
    • 我们描述了一种处理地球物理数据的方法,该方法至少包括来自地球勘测区域的潜在现场勘测的测量的潜在磁场数据,以提供所述勘测区域的底层地质的三维表示,该方法包括:输入地形 - 所述勘测区域中的不同深度的地质特征与所述波长范围中的不同波长相关联,所述潜在野数据包括空间波长范围的数据;所述勘测区域中的不同深度处的地质特征与所述波长范围中的不同波长相关联; 通过空间波长对所述潜在场数据进行滤波以生成第一组多个滤波的潜在场数据集,每个滤波器组与相应的波长或波长范围有关,各自针对不同的相应所述深度处的地质特征; 处理每个所述过滤的一组潜在的场数据,以识别包括每个所述过滤的一组潜在的场数据中的线空间特征和点空间特征中的一者或两者的一组空间特征,并且为每个所述 经滤波的一组潜在的场数据,所述一组绘图数据代表针对由所述滤波所针对的所述深度的所述所识别的一组空间特征; 以及组合所述绘图数据组以产生提供所述勘测区域的所述基础地质的三维表示的三维地图数据。