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METHOD AND APPARATUS FOR INVESTIGATING FLUID FLOW VARIABLES, ELEMENT CHARACTERISTICS AND NEARSURFACE TEMPERATURE AND FORCES
METHOD AND APPARATUS FOR INVESTIGATING FLUID FLOW VARIABLES, ELEMENT CHARACTERISTICS AND NEARSURFACE TEMPERATURE AND FORCES
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机译:研究流体流动变量,元素特征以及近地表面温度和力的方法和装置
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摘要
A flow field seeded with elements is illuminated by a shaped light beam (5) introduced into the optical axis (20) of a video detector (21) by a polarising beam-splitter (10). The laser is pulsed and (21) records multiple element scattering images, after going through a lens (8). Images are then processed to extract the velocity field and/or aerosol characteristics. To measure of viscosity, pressure, density, and velocity, three seeding populations of varying size are used to derive a set of simultaneous equations, together with the perfect-gas law. Furthermore, the remaining portion of the light beam not striking any seeding can be used, in conjunction with parameter-sensing paints, to record back-surface temperature/pressure, or PSP/TSP data can be recorded of luminescence created by an external excitation source. This apparatus is capable of providing real-time, 3D aerodynamic together with back-surface heat transfer/pressure information, simultaneously through a single integrated modular measurement means.
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