Invention Grant
- Patent Title: Spatially-and temporally-resolved multi-parameter interferometric rayleigh scattering system and method
- Patent Title (中): 空间和时间分辨的多参数干涉式瑞利散射系统及方法
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Application No.: US13671270Application Date: 2012-11-07
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Publication No.: US08976351B2Publication Date: 2015-03-10
- Inventor: Daniel Bivolaru , Andrew D. Cutler , Paul M. Danehy
- Applicant: The George Washington University , The United States of America as represented by the Administrator of the National Aeronautics and Space Administration
- Applicant Address: US DC Washington US DC Washington US VA Hampton
- Assignee: The United States of America as Represented by NASA,The George Washington University,Daniel Bivolaru
- Current Assignee: The United States of America as Represented by NASA,The George Washington University,Daniel Bivolaru
- Current Assignee Address: US DC Washington US DC Washington US VA Hampton
- Agency: Blank Rome LLP
- Main IPC: G01N21/00
- IPC: G01N21/00 ; G01N21/53 ; G01N21/72 ; G01J3/44

Abstract:
A system that simultaneously measures the translational temperature, bulk velocity, and density in gases by collecting, referencing, and analyzing nanosecond time-scale Rayleigh scattered light from molecules is described. A narrow-band pulsed laser source is used to probe two largely separated measurement locations, one of which is used for reference. The elastically scattered photons containing information from both measurement locations are collected at the same time and analyzed spectrally using a planar Fabry-Perot interferometer. A practical means of referencing the measurement of velocity using the laser frequency, and the density and temperature using the information from the reference measurement location maintained at constant properties is provided.
Public/Granted literature
- US20130141721A1 SPATIALLY-AND TEMPORALLY-RESOLVED MULTI-PARAMETER INTERFEROMETRIC RAYLEIGH SCATTERING SYSTEM AND METHOD Public/Granted day:2013-06-06
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