GASIFIER CONFIGURED TO ELECTRODYNAMICALLY AGITATE CHARGED CHEMICAL SPECIES IN A REACTION REGION AND RELATED METHODS
    61.
    发明申请
    GASIFIER CONFIGURED TO ELECTRODYNAMICALLY AGITATE CHARGED CHEMICAL SPECIES IN A REACTION REGION AND RELATED METHODS 有权
    在反应区域配置为电化学充电的化学物质的气化器及相关方法

    公开(公告)号:US20140196369A1

    公开(公告)日:2014-07-17

    申请号:US14153554

    申请日:2014-01-13

    Abstract: Embodiments are directed to a gasifier that electrodynamically agitates charged chemical species in a reaction region of a reaction vessel of a gasifier and related methods. In an embodiment, a gasifier includes a reaction vessel configured to gasify at least one hydrocarbon-containing feed material to synthesis gas. The reaction vessel includes an inlet(s) for receiving a gasification medium that reacts with the at least one hydrocarbon-containing feed material and an outlet for allowing the synthesis gas to exit from the reaction vessel, and a reaction region. The gasifier includes at least one electrode positioned to be in electrical communication with the reaction region, and a voltage source operatively coupled to the at least one electrode. The voltage source and the at least one electrode are cooperatively configured to generate a time varying electric field in the reaction region to effect electrodynamic mixing of charged chemical species therein during gasification.

    Abstract translation: 实施例涉及一种气化器,其在气化器的反应容器的反应区域和相关方法中电动搅拌带电化学物质。 在一个实施方案中,气化器包括构造成将至少一种含烃进料材料气化成合成气的反应容器。 反应容器包括用于接收与至少一种含烃原料反应的气化介质的入口和用于使合成气从反应容器中排出的出口和反应区域。 气化器包括定位成与反应区域电连通的至少一个电极和可操作地耦合到至少一个电极的电压源。 电压源和至少一个电极协同配置以在反应区域中产生时变电场,以在气化期间实现其中充入的化学物质的电动混合。

    Burner system including at least one coanda surface and electrodynamic control system, and related methods

    公开(公告)号:US10364984B2

    公开(公告)日:2019-07-30

    申请号:US14167875

    申请日:2014-01-29

    Abstract: Embodiments of the invention are directed to a burner system including at least one Coanda surface and at least two electrodes that are biased in a manner to influences a location of fuel flow relative to the at least one Coanda surface and related methods. In an embodiment, a burner system includes at least one Coanda surface, at least one nozzle positioned and configured to emit a fuel flow at least proximate to the at least one Coanda surface, at least two electrodes, and a voltage source operably coupled to the at least two electrodes. The voltage source may be configured to bias the at least two electrodes to generate an electric field at least proximate to the at least one Coanda surface that influences a location of the fuel flow and/or a flame relative to the at least one Coanda surface.

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