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    • 8. 发明申请
    • BURNER FOR NON-SYMMETRICAL COMBUSTION AND METHOD
    • 用于非对称燃烧的燃烧器和方法
    • WO0006946A3
    • 2000-06-02
    • PCT/US9917075
    • 1999-07-28
    • BLOOM ENG CO INCFINKE HARRY PMCGHEE MARTIN RKITKO GREGORY T
    • FINKE HARRY PMCGHEE MARTIN RKITKO GREGORY T
    • F23C9/00F23D14/12F23D14/22F23D14/32F23D14/66F23L15/00F23L15/02F23L15/04F23C3/00
    • F23C9/006F23C2202/40F23D14/125F23D14/22F23D14/32F23D14/66F23L15/00F23L15/02F23L15/04F23M2900/05021Y02E20/348
    • A burner (10) and method for non-symmetrical combustion generally includes a burner housing (11) enclosing a burner plenum (14). A fuel conduit (30) extends longitudinally within the housing and is positioned coaxial with a line spaced from a central axis of the burner. The fuel conduit defines a fuel exit opening (31). An air conduit (36) extends into the housing and defines an air opening (37) on an opposite side of the burner central axis from the fuel exit opening. The air opening is positioned a greater distance away from the burner central axis than the fuel exit opening. The air conduit has a cross-sectional shape in the form of a segment of a circle (figure 2). A baffle (28) is positioned at least partially around the fuel conduit and defines the air conduit. A burner port block (24) is connected to the baffle downstream of the fuel exit opening. The burner port block has a sidewall (26) diverging from the burner central axis (1), with the sidewall diverging at a flare angle of between approximately 2 degrees and approximately 30 degrees.
    • 用于非对称燃烧的燃烧器(10)和方法通常包括封闭燃烧器增压室(14)的燃烧器壳体(11)。 燃料导管(30)在壳体内纵向延伸并且与与燃烧器的中心轴线间隔开的线同轴定位。 燃料导管限定燃料出口(31)。 空气管道(36)延伸到壳体中并且在燃烧器中心轴线的与燃料出口开口相反的一侧限定空气开口(37)。 空气开口定位成比燃料出口开口远离燃烧器中心轴线。 空气管道的截面形状为一段圆形(图2)。 挡板(28)至少部分地定位在燃料导管周围并限定空气导管。 燃烧器端口块(24)连接到燃料出口开口下游的挡板。 燃烧器端口块具有与燃烧器中心轴线(1)分开的侧壁(26),侧壁在大约2度和大约30度之间的扩张角处发散。
    • 9. 发明专利
    • METHOD AND DEVICE FOR INHIBITING FORMATION OF NOX IN HEAT-ACCUMULATING BURNER
    • JPH0210002A
    • 1990-01-12
    • JP1994089
    • 1989-01-31
    • BLOOM ENG CO INC
    • HOVIS JAMES EFINKE HARRY P
    • F23C99/00F23C6/04F23C7/00F23C9/00F23L15/02
    • PURPOSE: To sustain the high efficiency characteristics of a heat storage system by incorporating an NOx suppressing means in a regenerative burner thereby reducing NOx and controlling the temperature and characteristics of flame. CONSTITUTION: Two regenerative burner 14 are coupled with regenerative beds 18, respectively, and combustion air/exhaust gas pass between the burner 14 and a combustion air/exhaust gas passage 16. Combustion air is fed through a blower 20 to one burner having a nozzle 32 for supplying fuel through an opening 34. The combustion air is fed through an inlet opening 36 to a burner 30 and passed through the beds 38, 18. A burner baffle 42 having four holes 44 is disposed contiguously to the nozzle 32 in order to jet the combustion air toward the opening 34. A low voltage region is thereby formed on the baffle plane to cause recirculation of combustion gas to an initial combustion zone thus lowering the flame temperature and reducing NOx in the combustion exhaust gas. The NOx suppressing means may jet fuel through a plurality of inclining fuel holes 56 toward an opening 54. Fuel hole inclining forward causes recirculation of combustion gas returning back to the initial combustion zone while suppressing NOx.