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    • 1. 发明申请
    • METHOD AND DEVICE FOR FLOW ANALYSIS
    • 用于分析流量的方法和设备
    • WO0148489A3
    • 2001-12-27
    • PCT/DE0004170
    • 2000-11-24
    • BOSCH GMBH ROBERTARNDT STEFANHEINEN CHRISTIANREYMANN KLAUSRUCK BODO
    • ARNDT STEFANHEINEN CHRISTIANREYMANN KLAUSRUCK BODO
    • G01P3/36G01P5/00G01P5/20G01P13/00
    • G01P5/20G01P5/001
    • A method and a device suitable for carrying out said method of analysis and quantification of flows are disclosed, in particular, for three-dimensional determination of flow-rate components, or the three-dimensional visualisation of flows in fluids or gases. To this effect electromagnetic waves are used, in particular, light, which is partly emitted or scattered by particles (30, 31, 32, 33, 34, 35), which are contained in a detection chamber (25) and which characterise the flow to be analysed. The flow is determined, by detecting the above particles, by means of at least one detection device, in the form of two-dimensional frequency selectively-, or frequency band selectively-taken images (40, 41, 42, 43). An illumination device generates the at least two, consecutive, at least approximately parallel light planes (19, 18, 17, 20, 21, 22) spatially arranged one behind the other, using electromagnetic waves of varying frequency, or differing frequency spectrum, which at least partly scan the detection chamber.(25)
    • 提出了一种适用于执行这种分析和定量流量的方法,特别是用于流速分量的三维测定或液体或气体中流动的三维可视化的方法和装置。 为了这个目的,电磁波,在特定的光,所述颗粒至少部分地由在一个检测空间(25)中含有待分析流动特性(30,31,32,33,34,35)延伸或以的形式由至少一个检测装置散 由二维频率选择性或频带选择性记录的图像(40,41,42,43)检测并确定其流量。 产生的连续的至少两个的照明装置,至少近似平行的,在空间上布置成一个在另一个后面的光平面(19,18,17,20,21,22)具有不同的频率或不同的频率频谱的电磁波,该扫描检测区域(25)至少局部。
    • 4. 发明专利
    • DK0706660T3
    • 1999-05-25
    • DK94916900
    • 1994-06-09
    • RUCK BODO DR ING
    • RUCK BODOKAISER ANDREAS
    • G01P5/00G01P13/00G01P13/04G01P13/02
    • PCT No. PCT/DE94/00653 Sec. 371 Date Mar. 25, 1996 Sec. 102(e) Date Mar. 25, 1996 PCT Filed Jun. 9, 1994 PCT Pub. No. WO95/01572 PCT Pub. Date Jan. 12, 1995A process and apparatus are disclosed for generating object traces representing the movement of objects through a measuring space. The measuring space can be illuminated by a laser or other light source, or alternatively the objects can be self-illuminating. In either event, light from the objects is detected over a finite acquisition time, to generate the object traces. During a predetermined portion of the acquisition time, preferably near the end, one of several parameters that govern the object trace width is altered to increase the width, thereby giving the object trace the form of an arrow or vector. The altered parameter can be the brightness of illumination, the sensitivity of the image detector, or the position or state of system components, in particular the image detector, a lens or other active optical component between the objects and the detector, or an optical component between the light source and the objects.
    • 7. 发明专利
    • DE50013860D1
    • 2007-01-25
    • DE50013860
    • 2000-11-24
    • BOSCH GMBH ROBERT
    • ARNDT STEFANHEINEN CHRISTIANREYMANN KLAUSRUCK BODO
    • G01P3/36G01P5/00G01P5/20G01P13/00
    • A method and a device suitable for carrying out the method are proposed for analyzing and quantifying flows, in particular for the three-dimensional determination of flow velocity components or the three-dimensional visualization of flows in fluids or gases. For this purpose, electromagnetic waves, especially light, are detected, which at least partially emanate from or are scattered by particles that are contained in the detection space and that characterize the flow to be analyzed, the waves being detected using at least one detection device, in the form of two-dimensional images that are recorded in a frequency-selective or frequency-band-selective manner, from which the flow is determined. The illuminating device for this purpose generates at least two, at least approximately parallel light sheets, arranged in spatial succession, generated in temporal succession, having electromagnetic waves of different frequencies or different frequency spectrums, which scan the detection space at least in areas.