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    • 1. 发明申请
    • PRESSURE CONTROLLED SPECTROSCOPIC HEATING VALUE SENSOR
    • 压力控制光谱加热值传感器
    • US20110211193A1
    • 2011-09-01
    • US12715006
    • 2010-03-01
    • Alexei SavelievSerguei ZelepougaDavid M. Rue
    • Alexei SavelievSerguei ZelepougaDavid M. Rue
    • G01J3/42G01N21/31
    • G01N21/3504G01N21/1717G01N21/274G01N21/359G01N21/85G01N33/225G01N2021/8557
    • A method and system for measuring a physical property of a fluid in which light having wavelengths in the near-infrared is directed into a test cell containing the fluid and portions of the light not absorbed by the fluid and passing out of the cell are spatially dispersed by wavelength, forming a light spectrum that is projected onto a detector. The light spectrum is digitized and inputted into a data processing unit in which it is compared to the actual spectrum of the light source stored in the system to determine the absorbance spectrum of the fluid. The system is spectrally calibrated by identifying known spectral features of the fluid absorbance spectrum. To correct for deviations in the original light source spectrum, a calibration method in which the pressure of the fluid in the test cell is alternated between a first positive pressure and a second positive pressure is employed. Upon determination of the absorbance spectrum of the fluid, the physical property of interest of the fluid is determined by comparing the absorbance spectrum to a plurality of spectra located within an on-board database.
    • 一种用于测量流体的物理性质的方法和系统,其中具有近红外线的波长的光被引导到包含流体的测试电池中,并且未被流体吸收并且流出电池的光的部分空间分散 通过波长形成投射到检测器上的光谱。 光谱被数字化并输入到数据处理单元,其中将其与存储在系统中的光源的实际光谱进行比较以确定流体的吸收光谱。 通过识别流体吸收光谱的已知光谱特征对该系统进行光谱校准。 为了校正原始光源光谱中的偏差,采用校准方法,其中测试电池中的流体的压力在第一正压力和第二正压之间交替。 在确定流体的吸收光谱之后,通过将吸收光谱与位于车载数据库内的多个光谱进行比较来确定流体感兴趣的物理性质。
    • 8. 发明授权
    • Flex-flame burner and self-optimizing combustion system
    • 柔性火焰燃烧器和自优化燃烧系统
    • US06702571B2
    • 2004-03-09
    • US09946182
    • 2001-09-05
    • Hamid A. AbbasiDavid M. RueJohn C. Wagner
    • Hamid A. AbbasiDavid M. RueJohn C. Wagner
    • F23N500
    • F23D14/22F23C7/008F23D14/60F23N2025/16F23N2035/06
    • A combustion system for automatic, real-time control of a combustion process which can be applied with significant advantage to a wide range of furnaces, boilers and combustors. The system includes a burner body having a primary first fluid inlet end forming at least one primary first fluid inlet and a first fluid outlet end forming at least one first fluid outlet. An inner conduit is disposed within the burner body, forming a fluid flow region between the burner body and the inner conduit. The inner conduit has a second fluid inlet distal from the first fluid outlet and a second fluid outlet proximate the first fluid outlet. An internal adjustment device is provided for adjusting a flow cross-sectional area for a first fluid and/or a second fluid disposed within the burner body.
    • 一种用于自动实时控制燃烧过程的燃烧系统,可广泛应用于各种炉,锅炉和燃烧器。 该系统包括燃烧器本体,其具有形成至少一个初级第一流体入口的初级第一流体入口端和形成至少一个第一流体出口的第一流体出口端。 内部管道设置在燃烧器主体内,在燃烧器主体和内部管道之间形成流体流动区域。 内导管具有远离第一流体出口的第二流体入口和靠近第一流体出口的第二流体出口。 提供内部调节装置,用于调节设置在燃烧器主体内的第一流体和/或第二流体的流动横截面积。