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    • 1. 发明公开
    • BRENNER FÜR FLÜSSIGE BRENNSTOFFE
    • 燃烧器液体燃料
    • EP1110033A1
    • 2001-06-27
    • EP99936224.7
    • 1999-08-13
    • Toby AG
    • WÜEST, JosefSTEINER, Heinz
    • F23D11/44F23D5/18
    • F23D11/443F23D11/406F23D11/448
    • The invention relates to a burner (1) for liquid fuel, notably extra light fuel, which can be controlled by a burner control device and comprises an air circulator (3) driven by a motor (4). A burner pot (45) comprises an evaporator chamber (39) and an atomization organ (30) positioned in said evaporator chamber (39), which can be heated by means of an electric heating device (20). According to the invention a cylindrical flame holder (11), along whose perforated outer surface the flame is generated during burner operations, is placed onto the evaporator chamber (39). Means are provided for, for example a deflection collar (12a, 12b) which partly encloses the flame holder (11), by means of which a part of the hot exhaust-gas flow is deflected in such a way that it heats the evaporator chamber (39) from the outside. The output signal of a temperature sensor arranged at the burner pot (45) is transmitted to the burner control device. The burner control device cuts the electric heating device (20) switched on when the burner (1) was started as soon as the actual value of the temperature measured by the temperature sensor (8) at the burner pot (5, 45) exceeds a setpoint which can be set in the burner control device. As a result, no further external electrical energy is required after the start of the burner (1). The burner (1) can be modulated at a ratio of 1:3, for example between 5 and 15 kW, and is suitable for heating residential buildings with correspondingly low heat requirements by burning extra light heating fuel.
    • 6. 发明公开
    • VERFAHREN ZUR REGELUNG EINES BRENNERS EINER HEIZUNGSANLAGE MIT ZWEI VERBRAUCHER
    • 方法加热系统的燃烧器与双控消费者
    • EP2084463A1
    • 2009-08-05
    • EP07816196.5
    • 2007-10-18
    • Toby AG
    • WÜEST, Josef
    • F24D19/10
    • F24D19/1066F23N2037/06
    • The invention relates to a method for regulating a burner of a heating system with a heating vessel and two loads, namely an all-weather heating circuit which is a direct heating circuit without a mixing valve, and a boiler circuit with a hot water boiler, wherein either one of these two loads can be connected to the heating vessel on the input side by means of a transfer valve, wherein the burner is switched off when a switch-off threshold TAB for the hot water boiler or a switch-off threshold TAH for the heating circuit is exceeded, and the burner is switched on when a switch-on threshold TEB for the hot water boiler or a switch-on threshold TEH for the heating circuit is not reached. According to the invention, the burner is kept in operation after being filled with domestic water during a burner lag time tn when the heating operation is enabled. During this burner lag time tn, the transfer valve is switched over to the heating circuit. The burner lag time tn is varied in accordance with the heating demands of the heating circuit. By means of the invention, the burner lead time is extended in order to reduce the number of burner starts.
    • 7. 发明公开
    • VERFAHREN ZUR REGELUNG EINES BRENNERS
    • EP2052187A1
    • 2009-04-29
    • EP07785063.4
    • 2007-07-24
    • Toby AG
    • WÜEST, Josef
    • F23N1/08
    • F23N1/082F23N2027/02F23N2027/10
    • The invention relates to a method for controlling a modulating burner, the power of which can be varied between a minimum power Qmin and a rated power QN, wherein the power can be controlled proportionally to the difference between a boiler water temperature actual value TKist and a boiler water temperature setpoint value TKsoll. According to the invention, when the burner is started, rather than the current difference between the boiler water temperature actual value TKist and the boiler water temperature setpoint value TKsoll, the variable used to determine the burner power is a modified parameter that is modified as a function of time in such a way that after a certain time the difference between the boiler water temperature actual value TKist and the boiler water temperature setpoint value TKsoll is the active variable determining the current burner power in each instance. This parameter is a corrected boiler water temperature setpoint value TKsollkorr which acts on the effective difference used to control the burner power. The invention results in longer burner run times.
    • 本发明涉及一种用于控制调节燃烧器的方法,其功率可以在最小功率Q min分压与额定功率Q N N N之间变化,其中功率可以 可以与锅炉水温实际值T KIST 和锅炉水温设定值T Ksoll之间的差值成比例地控制。 根据本发明,当燃烧器启动时,而不是锅炉水温实际值TISKist和锅炉水温度设定值T KCl1之间的电流差, 用于确定燃烧器功率的变量是被修改为时间的函数的修改参数,使得在一定时间之后,锅炉水温实际值Kist 与锅炉水之间的差 温度设定值T< Ksoll< / SUB>是在每种情况下确定当前燃烧器功率的活动变量。 该参数是用于控制燃烧器功率的有效差异的校正锅炉水温设定值T Ksollkorr 。 本发明导致更长的燃烧器运行时间。
    • 8. 发明公开
    • Brenner mit einer Verdampferkammer
    • EP2045521A2
    • 2009-04-08
    • EP08165000.4
    • 2008-09-24
    • Toby AG
    • Wueest, JosefMinder, Claude
    • F23D11/44
    • F23D11/441F23D11/448F23D2700/032
    • Ein Brenner mit einer Verdampferkammer (1), einer Brennstoffpumpe (15) für die Förderung des Brennstoffs, einem Gebläse (2) für die Förderung der Verbrennungsluft, einem Zerstäuberbecher (3), einem Mischrad (4) und einem Flammenhalter (5), wobei die Verdampferkammer eine zum Flammenhalter hin offene Kammer ist, die durch einen Boden (12) und eine an den Boden angrenzende Seitenwand (13) begrenzt ist, wobei die Seitenwand (13) an einem Vorsprung (18) endet, und wobei ein Flammenhalter (5) auf dem Vorsprung sitzt, ist dadurch gekennzeichnet, dass die Seitenwand (13) gegen den Boden (12) hin als gekrümmte Fläche und gegen den Vorsprung (18) hin als gekrümmte Fläche ausgebildet ist.
    • 燃烧器具有用于将燃料输送到雾化杯(3)的燃料泵(15)和用于在蒸发室(1)中输送燃烧空气的鼓风机(2)。 雾化器杯和混合轮(4)布置在室中。 该腔室由底座和一个在突出部分(18)处终止的侧壁(13)限定。 框架架(5)位于突出部上,并且在操作期间火焰在保持器的外壁处燃烧。 侧壁形成为朝向基部和突起的弯曲表面,使得从基部到侧壁的过渡是连续的。
    • 9. 发明公开
    • VERFAHREN ZUR REGELUNG EINES BRENNERS
    • EP2049839A1
    • 2009-04-22
    • EP07785062.6
    • 2007-07-24
    • Toby AG
    • WÜEST, Josef
    • F23N1/08
    • F23N1/082F23N2027/10
    • The invention relates to a method for regulating a modulated burner having an output that is variable between a minimal output Qmin and a rated output QN, wherein the output is regulated to be proportional to the difference between the boiler water actual temperature value TKact, and the boiler water set temperature value TKset. According to the invention, there is a power output limit that is derived from the boiler water set temperature value TKset. In this way the burner remains in operation for longer with a low heating requirement, and hence the number of burner starts will be reduced.
    • 调节燃烧器的方法技术领域本发明涉及一种用于调节具有可在最小输出Qmin和额定输出QN之间变化的输出的调节燃烧器的方法,其中输出被调节成与锅炉水实际温度值TKact和 锅炉水设定温度值TKset。 根据本发明,存在从锅炉水设定温度值TKset导出的功率输出限制。 以这种方式,燃烧器以较低的加热要求保持运行时间较长,并且因此燃烧器启动的次数将减少。
    • 10. 发明授权
    • BRENNER FÜR FLÜSSIGE BRENNSTOFFE
    • 燃烧器液体燃料
    • EP1110033B1
    • 2004-02-25
    • EP99936224.7
    • 1999-08-13
    • Toby AG
    • WÜEST, JosefSTEINER, Heinz
    • F23D11/44F23D5/18
    • F23D11/443F23D11/406F23D11/448
    • The invention relates to a burner (1) for liquid fuel, notably extra light fuel, which can be controlled by a burner control device and comprises an air circulator (3) driven by a motor (4). A burner pot (45) comprises an evaporator chamber (39) and an atomization organ (30) positioned in said evaporator chamber (39), which can be heated by means of an electric heating device (20). According to the invention a cylindrical flame holder (11), along whose perforated outer surface the flame is generated during burner operations, is placed onto the evaporator chamber (39). Means are provided for, for example a deflection collar (12a, 12b) which partly encloses the flame holder (11), by means of which a part of the hot exhaust-gas flow is deflected in such a way that it heats the evaporator chamber (39) from the outside. The output signal of a temperature sensor arranged at the burner pot (45) is transmitted to the burner control device. The burner control device cuts the electric heating device (20) switched on when the burner (1) was started as soon as the actual value of the temperature measured by the temperature sensor (8) at the burner pot (5, 45) exceeds a setpoint which can be set in the burner control device. As a result, no further external electrical energy is required after the start of the burner (1). The burner (1) can be modulated at a ratio of 1:3, for example between 5 and 15 kW, and is suitable for heating residential buildings with correspondingly low heat requirements by burning extra light heating fuel.