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    • 1. 发明授权
    • Low NO.sub.x primary zone radiant screen device
    • 低NOx主区辐射屏设备
    • US4904179A
    • 1990-02-27
    • US935070
    • 1986-11-21
    • Thomas E. DragoChester D. Ripka
    • Thomas E. DragoChester D. Ripka
    • F23D14/70
    • F23D14/70F23C2203/20
    • An apparatus and method for use in a combustion system of a gas-fired furnace to inhibit formation of oxides of nitrogen (NO.sub.x) by the combustion system thereby reducing NO.sub.x emissions from the combustion system. The apparatus is made of a material which is positioned at the interface of the primary zone and the secondary zone of a combustion flame produced by a two-zone burner which is part of the combustion system, to temper the combustion flame by absorbing thermal energy from the combustion flame. The device sufficiently tempers the combustion flame to limit peak combustion flame temperatures and residence times at these peak combustion flame temperatures to levels which inhibit formation of oxides of nitrogen.
    • 一种在燃烧炉的燃烧系统中使用的用于通过燃烧系统抑制形成氮氧化物(NOx)的装置和方法,从而减少来自燃烧系统的NOx排放。 该设备由位于燃烧火焰的主区域和次级区域的界面上的材料制成,燃烧火焰是由作为燃烧系统的一部分的两区燃烧器产生的,以通过吸收来自 燃烧火焰。 该装置充分地调节燃烧火焰,以将峰值燃烧火焰温度和停留时间在这些峰值燃烧火焰温度下限制到抑制氮氧化物形成的水平。
    • 6. 发明授权
    • Device for inhibiting NO.sub.x formation by a combustion system
    • 用于抑制由燃烧系统形成NOx的装置
    • US4776320A
    • 1988-10-11
    • US906669
    • 1986-09-12
    • Chester D. RipkaJohn A. Shaheen
    • Chester D. RipkaJohn A. Shaheen
    • F23M9/06F24H3/00F24H3/08
    • F23M9/06
    • A device is disclosed for use in a combustion system to inhibit formation of oxides of nitrogen (NO.sub.x) by the combustion system thereby reducing NO.sub.x emissions from the combustion system. The device is made of a material, such as stainless steel, which is positioned at the periphery of a combustion flame produced by a burner which is part of the combustion system, to temper the combustion flame by absorbing thermal energy from the combustion flame. The device sufficiently tempers the combustion flame to limit peak combustion flame temperatures and residence times at these peak combustion flame temperatures to levels which inhibit formation of oxides of nitrogen while allowing substantially complete combustion of the fuel supplied to the burner.
    • 公开了一种在燃烧系统中用于抑制由燃烧系统形成氮氧化物(NOx)的装置,从而减少来自燃烧系统的NOx排放。 该装置由诸如不锈钢的材料制成,其位于由作为燃烧系统的一部分的燃烧器产生的燃烧火焰的周边处,以通过从燃烧火焰吸收热能来调节燃烧火焰。 该装置充分地调节燃烧火焰,以将峰值燃烧火焰温度和停留时间在这些峰值燃烧火焰温度下限制到抑制氮氧化物形成的水平,同时允许供应到燃烧器的燃料基本上完全燃烧。
    • 7. 发明授权
    • Method and apparatus for reducing corrosion in a heat exchanger
    • 减少热交换器腐蚀的方法和装置
    • US4231417A
    • 1980-11-04
    • US44449
    • 1979-06-01
    • Chester D. Ripka
    • Chester D. Ripka
    • F24F13/22F28F19/00
    • F24F13/22Y10S165/921
    • Method and apparatus for preventing condensate from forming on the inside walls of the heat exchanger of a combination air conditioning and heating unit during the cooling mode of operation. The formation of condensate on the inside surfaces of the heat exchanger is reduced by bleeding a small but sufficient amount of air pressurized by the air blower and conditioned by the evaporator into the combustion chamber and then into the heat exchanger to displace ambient air with high moisture content from the interior of the heat exchanger. A hole or a number of holes is provided in the partition separating the discharge section from the burner control section which is open to atmosphere to allow a portion of conditioned air into the heat exchanger.
    • 在冷却运行模式期间防止冷凝物在组合式空调和加热单元的热交换器的内壁上形成的方法和装置。 在热交换器的内表面上形成冷凝物通过将由鼓风机加压并被蒸发器调节的小而足够量的空气排出到燃烧室中,然后进入热交换器以使高湿度环境空气 内容来自热交换器的内部。 在将排放部分从与大气开放的燃烧器控制部分分开的隔板中设置有一个或多个孔,以允许一部分经调节的空气进入热交换器。
    • 8. 发明授权
    • Method and apparatus for recovering and purifying refrigerant including
liquid recovery
    • 回收和净化包括液体回收的制冷剂的方法和装置
    • US5247804A
    • 1993-09-28
    • US31754
    • 1993-03-15
    • Lowell E. PaigeChester D. Ripka
    • Lowell E. PaigeChester D. Ripka
    • F25B45/00
    • F25B45/00F25B2345/002
    • A refrigerant recovery system is operated to withdraw compressible refrigerant from a refrigeration system by first withdrawing liquid refrigerant from the system being serviced through a suitable conduit and delivering the withdrawn refrigerant directly to a refrigerant storage means. In the refrigerant storage means at least a portion of the refrigerant so withdrawn exists in gaseous form and a portion of this is withdrawn from the storage means and passed serially through a compressor, a condenser, and a refrigerant expansion device before being delivered back to the refrigerant storage means where is evaporates and absorbs heat from the refrigerant within the storage means thereby cooling the storage means and lowering the pressure therein to thereby increase the withdrawal of the liquid refrigerant from the refrigeration system through the conduit. The system controlled parameters including temperature of the refrigerant and the storage means, and compressor suction and discharge pressure are sensed. A detectable change in the value of these system control parameters occur at a time which may be correlated at a time at which the state of the refrigerant being withdrawn from the refrigeration system changes from liquid to vapor. This information is used to shift the system from a liquid recovery mode of operation to a vapor recovery mode.
    • 操作制冷剂回收系统以从制冷系统中抽取可压缩的制冷剂,首先通过合适的导管将系统中的液体制冷剂排出,并将排出的制冷剂直接输送到制冷剂储存装置。 在制冷剂储存装置中,所述抽出的制冷剂的至少一部分以气态形式存在,并且其一部分从储存装置中排出,并且在被送回到所述储存装置之前通过压缩机,冷凝器和制冷剂膨胀装置通过 制冷剂储存装置,其从存储装置内的制冷剂蒸发并吸收热量,从而冷却存储装置并降低其中的压力,从而通过导管增加液体制冷剂从制冷系统的抽出。 检测包括制冷剂和储存装置的温度以及压缩机吸入和排出压力的系统控制参数。 这些系统控制参数的值的可检测变化发生在从制冷系统抽出的制冷剂的状态从液体变为蒸气的时间可能相关的时间。 该信息用于将系统从液体恢复操作模式转移到蒸气回收模式。
    • 9. 发明授权
    • Fuel efficient rapid response water heating module
    • 燃油效率快速响应水加热模块
    • US4993402A
    • 1991-02-19
    • US451654
    • 1989-12-18
    • Chester D. Ripka
    • Chester D. Ripka
    • F24H1/12F24H1/44F24H8/00
    • F24H1/43F24H1/124F24H1/28F24H1/44F24H8/00Y02B30/102
    • A water heating module. The module is adapted for heating water for general residential and commercial use and as a supply for a hydronic heating system. The module is capable of supplying a large volume of hot water near instantaneously on demand without exhaustion. There is a small hot water tank in the module, to supply small demands and to reduce ambient losses while module is in standby. Condensing combustion gases are used to preheat incoming cold water; both features combining to produce high fuel efficiency in the module. A radiant infrared burner may be used in the module to eliminate combustion roar and also to substantially reduce NO.sub.x emission, thus enabling sale of the module in jurisdictions having strict NO.sub.x emission standards. '
    • 水加热模块。 该模块适用于一般住宅和商业用途的水加热,以及用于水力加热系统的供应。 该模块能够在短时间内立即供应大量的热水而不耗尽。 模块中有一个小型热水箱,可以在模块待机时提供小的需求并减少环境损耗。 冷凝燃烧气体用于预热进入的冷水; 这两个特征组合在模块中产生高燃料效率。 可以在模块中使用辐射红外线燃烧器以消除燃烧咆哮,并且还可以显着减少NOx排放,从而能够在具有严格的NOx排放标准的管辖区内出售模块。
    • 10. 发明授权
    • Induced draft warm air furnace with radiant infrared burner
    • 带辐射红外线燃烧器的引风式暖风炉
    • US4945890A
    • 1990-08-07
    • US402734
    • 1989-09-05
    • Chester D. Ripka
    • Chester D. Ripka
    • F24H3/10F24H9/18
    • F24H3/105F24H9/1836
    • An induced draft warm air furnace employing a radiant infrared burner. The use of a radiant burner results in a very low concentration of oxides of nitrogen (NO.sub.X), in the combustion gases produced. In addition, the use of a radiant burner eliminates the combustion roar produced by other types of burners found in similar furnaces. Further, the invention allows the attainment of the advantages of a radiant burner in a furnace of otherwise standard design with only minor modification. The scope of the invention includes the use of the radiant burner within a combustion chamber which is either within the heat exchanger enclosure and joined to the heat exchanger or within a burner box mounted external to the heat exchanger enclosure but having means for the free passage of combustion gases from the combustion chamber to the heat exchanger. The use of induced draft eliminates the possibility of combustion gases leaking out of the combustion chamber or heat exchanger.
    • 采用辐射红外线燃烧器的感应式采暖空气炉。 使用辐射燃烧器会导致产生的燃烧气体中氮氧化物(NOX)的浓度非常低。 此外,使用辐射式燃烧器消除了在类似炉中发现的其他类型燃烧器产生的燃烧吼声。 此外,本发明允许在炉的另一标准设计中实现辐射燃烧器的优点,只进行微小的修改。 本发明的范围包括在燃烧室内使用辐射燃烧器,该燃烧室在热交换器外壳内并连接到热交换器,或在安装在热交换器外壳外部的燃烧器箱内,但具有用于自由通过 从燃烧室到热交换器的燃烧气体。 使用引风机可以消除燃烧气体从燃烧室或热交换器泄漏出来的可能性。