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    • 2. 发明授权
    • Combustion heater
    • 燃烧加热器
    • US5195886A
    • 1993-03-23
    • US586501
    • 1990-09-21
    • Hiroyuki Ida
    • Hiroyuki Ida
    • F23N5/02F23N5/20
    • F23N5/203F23N2023/02F23N2023/08F23N2027/02F23N2027/04F23N2027/06F23N2027/38F23N2033/08F23N2033/10F23N2035/30F23N2041/14F23N5/02
    • According to a first aspect of the invention, a combustion heater has an ECU for controlling operations of a glow plug, a battery, a fuel pump, and a blower for supplying air to a combustor. The ECU is responsive to an instruction signal instructing starting ignition of the combustor for starting to cause the battery to apply a first predetermined voltage to the glow plug, and at the same time starting to cause both of the fuel pump and the blower to operate for a predetermined time period, and when ignition of the combustor is detected, the ECU starts to cause both of the fuel pump and the blower to operate, and at the same time starts to cause the battery to apply a second predetermined voltage lower than the first predetermined voltage to the glow plug. According to a second aspect of the invention, the ECU is responsive to an instruction signal instructing stopping combustion of the combustor for causing the blower to supply air at a flow rate at which air has been supplied to the combustor immediately before the signal is supplied to the ECU, for a first predetermined time period, and after the first predetermined time period has elapsed, the ECU causes the flow rate to be progressively decreased to a first predetermined flow rate over a second predetermined time period, and then causes the blower to supply air at a second predetermined flow rate larger than the first predetermined flow rate.
    • 根据本发明的第一方面,燃烧加热器具有用于控制用于向燃烧器供给空气的电热塞,电池,燃料泵和鼓风机的操作的ECU。 ECU响应于指示燃烧器的起动点火的指令信号,开始使电池向电热塞施加第一预定电压,并且同时开始使燃料泵和鼓风机两者操作 在预定的时间段内,当检测到燃烧器的点火时,ECU开始使燃料泵和鼓风机两者工作,并且同时开始使电池施加比第一 预定电压到电热塞。 根据本发明的第二方面,ECU响应于指示停止燃烧器的燃烧的指令信号,使得鼓风机在信号被供给之前立即向已经向燃烧器供应空气的流量供应空气 ECU经过第一预定时间段,并且在经过第一预定时间段之后,ECU使流量在第二预定时间段内逐渐降低到第一预定流量,然后使鼓风机供应 空气以比第一预定流量大的第二预定流量。
    • 3. 发明授权
    • Gasifier system and method
    • 气化器系统及方法
    • US06532879B2
    • 2003-03-18
    • US10061362
    • 2002-02-04
    • Stan E. Abrams
    • Stan E. Abrams
    • F23N518
    • F23G5/0276F23G5/006F23G5/16F23G5/444F23G2201/303F23G2203/105F23G2203/8016F23G2205/122F23G2205/18F23G2206/203F23G2900/50006F23J2217/40F23J2217/50F23L15/00F23N1/02F23N5/003F23N2023/02F23N2023/08F23N2037/16Y02E20/12Y02E20/348
    • A solid fuel fed combustor system having a first chamber portion with an inlet feed for feeding a metered amount of a solid fuel thereto, a first burner stage having a first traveling conveyor firebelt, a metered amount of air introduced in progressively increasing proportions along the length of the first traveling conveyor. A second burner stage having a second traveling conveyor firebelt with air introduced in a progressively decreasing amount along the length of said second traveling conveyor firebelt and a controller for controlling air introduced to the system. The chamber has a sloped common roof section common to the burner stages and is made of radiative energy reflective fire brick and angled to reflect radiative energy generated from fuel traveling on the traveling conveyor firebelts and directing the radiative energy on fuel traveling on the first firebelt.
    • 一种固体燃料供给燃烧器系统,其具有第一室部分,其具有用于向其中供给计量的固体燃料的入口进料,具有第一行进输送机防火带的第一燃烧器台,沿着长度以逐渐增加的比例引入的计量量的空气 的第一个行进输送机。 第二燃烧器台具有沿着所述第二行进输送机防火带的长度以逐渐减小的量引入的空气的第二行进输送机防火带和用于控制引入到所述系统的空气的控制器。 该室具有与燃烧器阶段相同的倾斜的共同屋顶部分,并且由辐射能反射的火砖制成,并且成角度以反映在行进的输送机防火带上行驶的燃料产生的辐射能量并将辐射能量引导到在第一火带上行驶的燃料。
    • 4. 发明申请
    • GASIFIER SYSTEM AND METHOD
    • 燃气系统及方法
    • US20010027737A1
    • 2001-10-11
    • US09138020
    • 1998-08-21
    • STAN E. ABRAMS
    • F23B007/00F23G005/027F23N005/00F23J015/00
    • F23G5/0276F23G5/006F23G5/16F23G5/444F23G2201/303F23G2203/105F23G2203/8016F23G2205/122F23G2205/18F23G2206/203F23G2900/50006F23J2217/40F23J2217/50F23L15/00F23N1/02F23N5/003F23N2023/02F23N2023/08F23N2037/16Y02E20/12Y02E20/348
    • An energy conversion system which comprises a solid fuel fed combustor system having a first chamber portion with an inlet feed for feeding a metered amount of a solid fuel thereto, a first burner stage having a first traveling conveyor firebelt, a metered amount of air introduced in progressively increasing proportions along the length of the first traveling conveyor. A second burner stage having a second traveling conveyor firebelt with air introduced in a progressively decreasing amount along the length of said second traveling conveyor firebelt and a controller for controlling air introduced to the system. The chamber has a sloped common roof section common to the burner stages and is made of radiative energy reflective fire brick and angled to reflect radiative energy generated from fuel traveling on the traveling conveyor firebelts and directing the radiative energy on fuel traveling on the first firebelt. The air introduced is controlled in amounts so as to automatically minimize excess air to the firebelt conveyors to minimize the quantity of carbon monoxide and nitrogen oxides and other pollutants.
    • 一种能量转换系统,包括固体燃料供给的燃烧器系统,其具有第一室部分,其具有用于向其中供给计量的固体燃料的入口进料,第一燃烧器台具有第一行进输送机防火带,将计量的空气引入 沿着第一行进输送机的长度逐渐增加的比例。 第二燃烧器台具有沿着所述第二行进输送机防火带的长度以逐渐减小的量引入的空气的第二行进输送机防火带和用于控制引入到所述系统的空气的控制器。 该室具有与燃烧器阶段相同的倾斜的共同屋顶部分,并且由辐射能反射的火砖制成,并且成角度以反映在行进的输送机防火带上行驶的燃料产生的辐射能量并将辐射能量引导到在第一火带上行驶的燃料。 所引入的空气的量被控制以便自动地最小化到带式输送机的过量空气,以使一氧化碳和氮氧化物和其它污染物的量最小化。
    • 5. 发明授权
    • Method and apparatus for detecting flame
    • 检测火焰的方法和装置
    • US4983853A
    • 1991-01-08
    • US348685
    • 1989-05-05
    • Peter W. N. DavallJohn D. Spencer
    • Peter W. N. DavallJohn D. Spencer
    • F23N5/08G08B17/12
    • G08B17/12F23N5/082F23N2023/02F23N2023/08F23N2023/10
    • A method of detecting flame within a region where flame is expected. Radiation emissions from the region are measured within selected portions of the visible and infra-red frequency bands. Spectral characteristics of the two measurements, including their auto spectra, coherency and transfer function, are derived. The derived spectral characteristics are compared with prestored spectral signatures representative of the spectral characteristics of radiation emitted from the region within the selected portions of the visible and infra-red frequency bands while known flame conditions prevail within the region--thereby estimating the deviation of the derived spectral characteristics from the prestored spectral signatures. The deviations aforesaid are compared with predetermined threshold alarm values to assess the presence or absence of flame.
    • 在预期火焰的区域内检测火焰的方法。 在可见光和红外频段的选定部分内测量该区域的辐射发射。 导出两个测量的光谱特性,包括它们的自动光谱,一致性和传递函数。 将导出的光谱特征与代表从可见光和红外频带的所选部分内的区域发射的辐射的光谱特征的预先存储的光谱特征进行比较,同时已知的火焰条件在该区域内占优势,从而估计衍生的光谱特征的偏差 来自预先存储的光谱特征的光谱特征。 将上述偏差与预定的阈值报警值进行比较,以评估是否存在火焰。
    • 7. 发明申请
    • Industrial flame sensor communication system
    • 工业火焰传感器通讯系统
    • US20030143503A1
    • 2003-07-31
    • US10056012
    • 2002-01-28
    • Gary G. WildJohn D. Eley
    • F23N005/00
    • F23N5/123F23N2023/02
    • A communication and data interpreting system for detecting and converting and combining multiple analog signals from flame detectors into a single analog signal and RS 485 for transmission. This system also uses an analog clamping circuit to generate the analog signal from flame rod sensors and a load resistor and a high voltage generator for generating the signal in an UV sensing tube. The input signals are then multiplexed and sent to a microcomputer. The microcomputer uses a diode and a solid state relay circuit to generate a compatible signal output to a burner control.
    • 一种通信和数据解释系统,用于检测和转换并将来自火焰检测器的多个模拟信号转换并组合成单个模拟信号,并传输RS 485。 该系统还使用模拟钳位电路从火焰棒传感器和负载电阻器以及用于在UV感测管中产生信号的高压发生器产生模拟信号。 然后将输入信号复用并发送到微型计算机。 微型计算机使用二极管和固态继电器电路来产生输出到燃烧器控制的兼容信号。
    • 10. 发明申请
    • Device for temperature regulation/limitation in a heat generating installation
    • 发热设备温度调节/限制装置
    • US20070175624A1
    • 2007-08-02
    • US10550281
    • 2004-03-18
    • Erhard AffolterRene JoubertJosef LelleLothar Schafer
    • Erhard AffolterRene JoubertJosef LelleLothar Schafer
    • G05D23/12G05D23/00
    • F23N5/242F23N2023/02F23N2023/04F23N2023/08
    • The invention relates to a device for temperature regulation/limitation in a heat generating installation, said device comprising at least one probe (Tk) that is connected to a regulator (20) which, in turn, is connected to an automatic heating system (40) by means of a communication interface (30). The inventive device is characterised in that the automatic heating system (40) comprises a safety module (41) which compares the temperature detected by the probe, forwarded to the regulator and transmitted from the regulator to the automatic heating system by means of the communication interface, with a maximum admissible safety temperature (TSTB) stored in the safety module (41), and in that, once the safety temperature is reached or exceeded, the safety module (41) generates a cut-off signal which causes the installation to be cut off by the automatic heating system.
    • 本发明涉及一种用于在发热设备中进行温度调节/限制的装置,所述装置包括连接到调节器(20)的至少一个探针(Tk),该调节器又连接到自动加热系统(40) )通过通信接口(30)。 本发明的装置的特征在于,自动加热系统(40)包括安全模块(41),其将由探头检测到的温度进行比较,转发到调节器并通过通信接口从调节器传送到自动加热系统 具有存储在安全模块(41)中的最大允许安全温度(TSTB),并且一旦达到或超过安全温度,安全模块(41)产生一个截止信号,使安装成为 由自动加热系统切断。