会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • PARTICLE BURNER DISPOSED BETWEEN AN ENGINE AND A TURBO CHARGER
    • 颗粒燃烧器在发动机和涡轮增压器之间分配
    • WO2008130487A2
    • 2008-10-30
    • PCT/US2008/004310
    • 2008-04-01
    • EWA ENVIRONMENTAL, INC.EVANS-BEAUCHAMP, Lincoln
    • EVANS-BEAUCHAMP, Lincoln
    • F01N3/10
    • F01N3/10
    • A system comprising an engine, a turbo charger, and a particle burner is provided. The particle burner is disposed between the engine and a turbine of the turbo charger. The particle burner receives exhaust from the engine, heats the exhaust to a combustion temperature of particles within the exhaust, and then directs the cleaned exhaust to the turbine. The particle burner can include a reverse flow heat exchanger to heat the exhaust received from the engine. The particle burner can also include a catalyst to catalyze the further combustion of gaseous products of incomplete combustion from within the engine. The heat produced by the further combustion at the catalyst provides a further boost to the temperature within the particle burner.
    • 提供了一种包括发动机,涡轮增压器和微粒燃烧器的系统。 颗粒燃烧器设置在涡轮增压器的发动机和涡轮之间。 颗粒燃烧器接收来自发动机的排气,将排气加热至排气内颗粒的燃烧温度,然后将清洁后的排气引导至涡轮机。 颗粒燃烧器可以包括逆流热交换器以加热从发动机接收的排气。 颗粒燃烧器还可以包括催化剂以催化来自发动机内的不完全燃烧的气体产物的进一步燃烧。 由催化剂进一步燃烧产生的热量进一步提高了颗粒燃烧器内的温度。
    • 3. 发明申请
    • PARTICLE BURNER INCLUDING A CATALYST BOOSTER FOR EXHAUST SYSTEMS
    • 颗粒燃烧器包括用于排气系统的催化剂增压器
    • WO2008130485A1
    • 2008-10-30
    • PCT/US2008/004293
    • 2008-04-01
    • EWA ENVIRONMENTAL, INC.EVANS-BEAUCHAMP, Lincoln
    • EVANS-BEAUCHAMP, Lincoln
    • F01N3/10
    • F01N3/023F01N3/2006F01N2240/02Y02T10/26
    • An exemplary exhaust cleaner comprises a reverse flow heat exchanger and a gas permeable catalyst. The reverse flow heat exchanger includes two interleaved ducts that are spiral-wound around a central volume. The gas permeable catalyst is disposed within the central volume and separates the central volume into first and second regions. The first duct of the reverse flow heat exchanger opens into the first region, and the second duct opens into the second region. The heat generated at the catalyst by the catalysis of incomplete combustion products within the exhaust heats the exhaust within the central volume to a temperature sufficient to burn particulates within the exhaust. The heat generated within the central volume by the catalysis and the combustion of any particulates is carried by the exhaust into the second duct where the heat is transferred to the cooler exhaust within the first duct.
    • 示例性的排气净化器包括逆流热交换器和气体可渗透催化剂。 逆流热交换器包括围绕中心体积螺旋缠绕的两个交错管道。 气体可渗透催化剂设置在中心体积内并将中心体积分离成第一和第二区域。 逆流热交换器的第一管道进入第一区域,第二管道通入第二区域。 在催化剂下通过催化排气中的不完全燃烧产物产生的热将中心体积内的排气加热到足以燃烧排气中的颗粒的温度。 通过催化和任何颗粒的燃烧在中心体积内产生的热量由排气承载到第二管道中,其中热量传递到第一管道内的较冷排气口。
    • 8. 发明申请
    • PARTICLE BURNER DISPOSED BETWEEN AN ENGINE AND A TURBO CHARGER
    • 发动机与涡轮发电机之间的颗粒燃烧器
    • WO2008130487A3
    • 2008-12-18
    • PCT/US2008004310
    • 2008-04-01
    • EWA ENVIRONMENTAL INCEVANS-BEAUCHAMP LINCOLN
    • EVANS-BEAUCHAMP LINCOLN
    • F01N5/04
    • F01N3/10
    • A system comprising an engine, a turbo charger, and a particle burner is provided. The particle burner is disposed between the engine and a turbine of the turbo charger. The particle burner receives exhaust from the engine, heats the exhaust to a combustion temperature of particles within the exhaust, and then directs the cleaned exhaust to the turbine. The particle burner can include a reverse flow heat exchanger to heat the exhaust received from the engine. The particle burner can also include a catalyst to catalyze the further combustion of gaseous products of incomplete combustion from within the engine. The heat produced by the further combustion at the catalyst provides a further boost to the temperature within the particle burner.
    • 提供了包括发动机,涡轮增压器和颗粒燃烧器的系统。 颗粒燃烧器设置在发动机和涡轮增压器的涡轮机之间。 颗粒燃烧器接收来自发动机的排气,将排气加热到排气内的颗粒的燃烧温度,然后将净化的废气引导至涡轮机。 颗粒燃烧器可以包括用于加热从发动机接收的废气的逆流热交换器。 颗粒燃烧器还可以包括催化剂以催化来自发动机内的不完全燃烧的气态产物的进一步燃烧。 在催化剂下进一步燃烧产生的热量进一步提高了颗粒燃烧器内的温度。