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
    • 4. 发明授权
    • Triple helical flow vortex reactor
    • 三重螺旋流涡流反应器
    • US07452513B2
    • 2008-11-18
    • US11309644
    • 2006-09-02
    • Igor Matveev
    • Igor Matveev
    • B01J19/08
    • F02K9/34F23C3/006F23R3/58H05H2001/3468
    • A triple helical flow vortex reactor has a reaction chamber (100) with the means to create three fluid flow vortexes and an optional double end orbiting plasma arc to sustain combustion. The first vortex is of fuel and combusted gases such that said fuel and combusted gases spiral away from a fuel inlet end (150) towards an exhaust nozzle or gas outlet end (110) of the reaction chamber (100). The second vortex is one starting at the gas outlet end (110) and confined to a thin layer at the inner wall surface (130) of the reaction chamber (100). The second vortex spirals in a direction reverse to the flow of the first vortex towards the fuel inlet end (150) of the reaction chamber (100). The third vortex is starting at the fuel inlet end and also confined to a thin layer at the inner wall surface (130) of the reaction chamber (100) in a direction with the flow of the first vortex.
    • 三重螺旋流涡流反应器具有反应室(100),其具有产生三个流体流涡流的装置和可选的双端旋转等离子体电弧以维持燃烧。 第一涡流是燃料和燃烧气体,使得所述燃料和燃烧的气体从燃料入口端(150)螺旋离开朝向反应室(100)的排气喷嘴或气体出口端(110)。 第二涡流是从气体出口端(110)开始并限定在反应室(100)的内壁表面(130)处的薄层。 第二涡旋沿与第一涡流的流动相反的方向朝向反应室(100)的燃料入口端(150)螺旋。 第三涡流在燃料入口端开始,并且在与第一涡流流动的方向上也限制在反应室(100)的内壁表面(130)处的薄层。
    • 5. 发明申请
    • Triple helical flow vortex reactor improvements
    • 三重螺旋流涡流反应器改进
    • US20090050713A1
    • 2009-02-26
    • US11843942
    • 2007-08-23
    • Igor Matveev
    • Igor Matveev
    • B05B7/10
    • F23C7/02F23C7/002
    • Improvements to a triple helical flow vortex reactor add an inner wall (103) having at least one transition point (121) between the fuel inlet end (101) and the gas outlet end (102) and a circumferential flow apparatus (120) operating at each transition point (121). A restrictor at each transition point (121) is optionally added to reduce aerodynamic resistance to the various fluid flows. A vortex swirler is optionally added through the fuel inlet end, which preferably surrounds an inlet nozzle combined with a plasma torch. The fuel inlet end is optionally equipped with cooling channels in which a coolant can flow isolated from the reaction chamber. An optional coaxial cylindrical wall extends through the reaction chamber and creates a toroidal volume for reactions.
    • 对三重螺旋流涡流反应器的改进添加了在燃料入口端(101)和气体出口端(102)之间具有至少一个转变点(121)的内壁(103)和在 每个转换点(121)。 任选添加每个过渡点(121)处的限流器以降低对各种流体流动的空气动力学阻力。 涡流旋流器任选地通过燃料入口端加入,燃料入口端优选地围绕与等离子体焰炬组合的入口喷嘴。 燃料入口端部可选地配备有冷却通道,冷却剂可以与反应室隔离。 可选的同轴圆柱形壁延伸穿过反应室,并产生反应的环形体积。
    • 6. 发明授权
    • Triple helical flow vortex reactor improvements
    • 三重螺旋流涡流反应器改进
    • US08252243B2
    • 2012-08-28
    • US12756303
    • 2010-04-08
    • Igor Matveev
    • Igor Matveev
    • B01J19/08
    • H05H1/30F23C3/006F23C6/04F23C7/002F23R3/58
    • Improvements to a triple helical flow vortex reactor improve the radio-transparent portion of the reactor. A central part is added thereto consisting of an electrically conductive, non-magnetic material. A movable electrode configured to controllably extend into a zone, discharge and retract. A protrusion on the wall optionally aids in the discharge. A feedstock injection unit includes nested pipes: an outer pipe conveys coolants and the inner pipe conveys feedstock. An additional fuel inlet may be connected to an additional reaction chamber connected in series to the reaction chamber. The central part may be porous permitting inward flow of fuel. Slots penetrating the inner wall of the central part enhance the introduction of magnetic and electric fields. An outer shell over the reaction chamber is configured to flow coolant over the outer wall of the reaction chamber.
    • 对三螺旋流涡流反应器的改进改进了反应器的无线透射部分。 添加有由导电的非磁性材料组成的中心部分。 可动电极构造成可控制地延伸到区域中,放电和缩回。 壁上的突起可选地有助于排出。 原料注入单元包括嵌套管:外管传送冷却剂,内管传送原料。 另外的燃料入口可以连接到与反应室串联连接的附加反应室。 中心部分可以是多孔的,允许向内流动的燃料。 穿透中心部分内壁的插槽增强了磁场和电场的引入。 反应室上的外壳构造成使冷却剂在反应室的外壁上流动。
    • 7. 发明授权
    • Triple helical flow vortex reactor improvements
    • 三重螺旋流涡流反应器改进
    • US07955567B2
    • 2011-06-07
    • US11843942
    • 2007-08-23
    • Igor Matveev
    • Igor Matveev
    • B01J19/08
    • F23C7/02F23C7/002
    • Improvements to a triple helical flow vortex reactor add an inner wall (103) having at least one transition point (121) between the fuel inlet end (101) and the gas outlet end (102) and a circumferential flow apparatus (120) operating at each transition point (121). A restrictor at each transition point (121) is optionally added to reduce aerodynamic resistance to the various fluid flows. A vortex swirler is optionally added through the fuel inlet end, which preferably surrounds an inlet nozzle combined with a plasma torch. The fuel inlet end is optionally equipped with cooling channels in which a coolant can flow isolated from the reaction chamber. An optional coaxial cylindrical wall extends through the reaction chamber and creates a toroidal volume for reactions.
    • 对三重螺旋流涡流反应器的改进添加了在燃料入口端(101)和气体出口端(102)之间具有至少一个转变点(121)的内壁(103)和在 每个转换点(121)。 任选添加每个过渡点(121)处的限流器以降低对各种流体流动的空气动力学阻力。 涡流旋流器任选地通过燃料入口端加入,燃料入口端优选地围绕与等离子体焰炬组合的入口喷嘴。 燃料入口端部可选地配备有冷却通道,冷却剂可以与反应室隔离。 可选的同轴圆柱形壁延伸穿过反应室,并产生反应的环形体积。
    • 9. 发明申请
    • Triple helical flow vortex reactor improvements
    • 三重螺旋流涡流反应器改进
    • US20110250098A1
    • 2011-10-13
    • US12756303
    • 2010-04-08
    • Igor Matveev
    • Igor Matveev
    • B01J19/12B01J19/02B01J8/14
    • H05H1/30F23C3/006F23C6/04F23C7/002F23R3/58
    • Improvements to a triple helical flow vortex reactor improve the radio-transparent portion of the reactor. A central part is added thereto consisting of an electrically conductive, non-magnetic material. A movable electrode configured to controllably extend into a zone, discharge and retract. A protrusion on the wall optionally aids in the discharge. A feedstock injection unit includes nested pipes: an outer pipe conveys coolants and the inner pipe conveys feedstock. An additional fuel inlet may be connected to an additional reaction chamber connected in series to the reaction chamber. The central part may be porous permitting inward flow of fuel. Slots penetrating the inner wall of the central part enhance the introduction of magnetic and electric fields. An outer shell over the reaction chamber is configured to flow coolant over the outer wall of the reaction chamber.
    • 对三螺旋流涡流反应器的改进改进了反应器的无线透射部分。 添加有由导电的非磁性材料组成的中心部分。 可动电极构造成可控制地延伸到区域中,放电和缩回。 壁上的突起可选地有助于排出。 原料注入单元包括嵌套管:外管传送冷却剂,内管传送原料。 另外的燃料入口可以连接到与反应室串联连接的附加反应室。 中心部分可以是多孔的,允许向内流动的燃料。 穿透中心部分内壁的插槽增强了磁场和电场的引入。 反应室上的外壳构造成使冷却剂在反应室的外壁上流动。
    • 10. 发明申请
    • Triple Helical Flow Vortex Reactor
    • 三重螺旋流涡旋反应器
    • US20080056961A1
    • 2008-03-06
    • US11309644
    • 2006-09-02
    • Igor Matveev
    • Igor Matveev
    • B01J19/00F02K9/00
    • F02K9/34F23C3/006F23R3/58H05H2001/3468
    • A triple helical flow vortex reactor has a reaction chamber (100) with the means to create three fluid flow vortexes and an optional double end orbiting plasma arc to sustain combustion. The first vortex is of fuel and combusted gases such that said fuel and combusted gases spiral away from a fuel inlet end (150) towards an exhaust nozzle or gas outlet end (110) of the reaction chamber (100). The second vortex is one starting at the gas outlet end (110) and confined to a thin layer at the inner wall surface (130) of the reaction chamber (100). The second vortex spirals in a direction reverse to the flow of the first vortex towards the fuel inlet end (150) of the reaction chamber (100). The third vortex is starting at the fuel inlet end and also confined to a thin layer at the inner wall surface (130) of the reaction chamber (100) in a direction with the flow of the first vortex.
    • 三重螺旋流涡流反应器具有反应室(100),其具有产生三个流体流涡流的装置和可选的双端旋转等离子体电弧以维持燃烧。 第一涡流是燃料和燃烧气体,使得所述燃料和燃烧的气体从燃料入口端(150)螺旋离开朝向反应室(100)的排气喷嘴或气体出口端(110)。 第二涡流是从气体出口端(110)开始并限定在反应室(100)的内壁表面(130)处的薄层。 第二涡旋沿与第一涡流的流动相反的方向朝向反应室(100)的燃料入口端(150)螺旋。 第三涡流在燃料入口端开始,并且在与第一涡流流动的方向上也限制在反应室(100)的内壁表面(130)处的薄层。