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    • 8. 发明授权
    • Inertial impactor with enhanced separation
    • 惯性冲击器具有增强的分离
    • US08202339B2
    • 2012-06-19
    • US12764514
    • 2010-04-21
    • Arun JanakiramanShiming FengPeter K. Herman
    • Arun JanakiramanShiming FengPeter K. Herman
    • B01D45/00
    • B01D45/08
    • An inertial gas-liquid impactor separator includes an inertial impactor collector having an impactor surface extending diagonally relative to axially accelerated flow, which surface is preferably a cone having a leading tip axially facing and axially aligned with the acceleration nozzle. In a further aspect, first and second inertial impactor collectors are provided in series, with an orifice in the first inertial impactor collector providing a nozzle for the second inertial impactor collector. Improved performance is provided by reducing the extent of the stagnation region to change from a narrow band particle size range to a wider band range and to shift cut-off size. An inertial gas-liquid impactor separator has a perforated layer of coalescence media having at least one aperture through which the gas-liquid stream flows. Improved performance is provided by increased penetration of the flow into the media patch and thereby enhancing particle capture by interception, impaction and diffusion.
    • 惯性气液冲击分离器包括惯性冲击收集器,该惯性冲击收集器具有相对于轴向加速流向对角延伸的冲击表面,该表面优选地是具有轴向面向前端并与加速喷嘴轴向对准的锥体。 在另一方面,第一和第二惯性冲击收集器被串联设置,第一惯性冲击收集器中的孔口为第二惯性冲击收集器提供喷嘴。 通过减小停滞区域的范围从窄带粒度范围变化到更宽的频带范围并改变截止尺寸来提供改进的性能。 惯性气体 - 液体冲击分离器具有穿孔层的聚结介质,其具有至少一个孔,气液流通过该孔流动。 通过增加流入介质贴剂的渗透度,从而通过拦截,嵌入和扩散增强颗粒捕获来提高性能。
    • 10. 发明授权
    • Exhaust gas aspirator
    • 废气吸气器
    • US08549850B2
    • 2013-10-08
    • US12263018
    • 2008-10-31
    • Arun JanakiramanShiming Feng
    • Arun JanakiramanShiming Feng
    • F01N3/02
    • F01N13/082F01N3/05F01N2270/02F01N2470/02F01N2470/30F01N2590/08Y02T10/20
    • According to one representative embodiment, an aspirator for cooling exhaust gas from an internal combustion engine includes a nozzle section, an expansion section, and an air entrainment section. The nozzle section is communicable in exhaust receiving communication with the internal combustion engine. The nozzle section includes a plurality of nozzles through which an exhaust gas stream is flowable. The expansion section is communicable in exhaust receiving communication with the plurality of nozzles. The air entrainment section is communicable in air supplying communication with the expansion section. The air is mixable with the exhaust gas within the expansion section.
    • 根据一个代表性的实施例,用于冷却来自内燃机的废气的抽吸器包括喷嘴部分,膨胀部分和空气夹带部分。 喷嘴部可在与内燃机接收的排气中进行通信。 喷嘴部分包括多个喷嘴,排气流可以通过该喷嘴流动。 膨胀部可在与多个喷嘴接收的排气中进行通信。 空气夹带部分在与膨胀部分的空气供应通信中可通信。 空气与膨胀段内的废气混合。