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    • 1. 发明申请
    • KÜHLER FÜR SCHÜTTGUT MIT EINER ABDICHTEINRICHTUNG ZWISCHEN BENACHBARTEN FÖRDERPLANKEN
    • COOLER对于批量与密封部件之间近域资金木板
    • WO2008017500A1
    • 2008-02-14
    • PCT/EP2007/007102
    • 2007-08-10
    • CLAUDIUS PETERS TECHNOLOGIES GMBHDIKTY, MarioHILGRAF, PeterSTAAK, ThomasSPRINZ, UweMEYER, HartmutBOCK, UweKNABBE, JörnKOEBERER, Günther
    • DIKTY, MarioHILGRAF, PeterSTAAK, ThomasSPRINZ, UweMEYER, HartmutBOCK, UweKNABBE, JörnKOEBERER, Günther
    • F27D15/02B65G25/06
    • F28C3/16B65G25/065F26B17/26F27D15/0213F28F2230/00
    • Eine Vorrichtung zum Kühlen von Schüttgut mit einem von Kühlgas durchströmten Rost (5) umfasst mehrere in Förderrichtung vor- und zurückbewegte Planken (51-53) und eine Abdichteinrichtung (7) zwischen den Planken (51-53), die räumlich voneinander getrennte äußere und innere Dichteinrichtungen (70, 74) aufweist. Erfindungsgemäß ist vorgesehen, dass die Abdichteinrichtung (7) einen längs der Planken (51-53) laufenden Förderkanal (8) zwischen den Dichteinrichtungen (70, 74) aufweist, an dem eine Gaszufuhr ausgebildet ist zur Bewirkung eines Gasstroms längs des Förderkanals (8). Durch die äußere Dichteinrichtung eingedrungenes Schüttgutmaterial kann abtransportiert werden, bevor es die innere Dichteinrichtung (74) erreichen und durchwandern kann. Der unerwünschte Materialdurchfall wird erheblich reduziert. Dank der Erfindung ist es nicht erforderlich, die Dichtungen eng auszuführen, wodurch sie unweigerlich verschleißanfällig würden. Sie können vielmehr verschleißgünstig ausgeführt werden. Dies bedingt zwar einen gewissen Eintrag von Schüttgutmaterial, der aber über den erfindungsgemäßen Förderkanal (8) abtransportiert wird. Die Erfindung verbindet hervorragende Dichtwirkung mit exzellenter Verschleißfestigkeit.
    • 用于冷却散装材料的装置的通过冷却气体篦流(5)包括多个在输送方向上游侧和移回木板(51-53)和密封装置(7)的板块(51-53)之间,所述空间上分离的外和 内密封装置(70,74)。 根据本发明,提供的是所述密封装置(7)沿所述木板包含(51-53)上运行的输送通道(8)的密封装置(70,74)中,向其中一个气体供给被配置为使气体的沿着所述输送通道的流动(8)之间 , 通过外密封装置已经渗透散装材料可以被运走之后才能到达内密封元件(74)和横动。 掉落不需要的材料显著减少。 由于本发明,没有必要进行紧密密封,它们将不可避免地容易磨损哪个。 它们可以被设计成穿低相当。 这的确需要散装材料的特定条目,但是这是通过根据本发明的输送通道(8)的输送。 本发明结合了优良的耐磨损性优良的密封效果。
    • 2. 发明申请
    • VORRICHTUNG ZUM BEFEUCHTEN EINES SCHÜTTGUTS
    • DEVICE加湿散装
    • WO2010142358A1
    • 2010-12-16
    • PCT/EP2010/000281
    • 2010-01-19
    • CLAUDIUS PETERS TECHNOLOGIES GMBHDIKTY, MarioDEIMEL, DominikGREISER, Carsten
    • DIKTY, MarioDEIMEL, DominikGREISER, Carsten
    • F16L55/24
    • F16L55/24B01F5/205B08B17/00
    • Die Erfindung betrifft eine Vorrichtung zum Befeuchten eines Schüttguts (11), insbesondere zum Befeuchten von Kraftwerksfilteraschen. Die Vorrichtung umfasst ein Fallrohr (14), an dessen oberem Ende ein Einlass (13) ausgebildet ist, durch den das Schüttgut (11) in das Fallrohr (14) eintritt, und an dessen unterem Ende ein Auslass (16) gebildet ist, durch den das Schüttgut (11) in befeuchtetem Zustand austritt. Erfindungs gemäß ist auf einer ersten Ebene (17) in dem Fallrohr (14) eine Mehrzahl von Wasserdüsen (20, 31) angeordnet und ist auf einer zweiten Ebene (18) in dem Fallrohr (14) eine Mehrzahl von Wasserdüsen (20, 31) angeordnet ist. Die Wasserdüsen (20, 31) der ersten Ebene (17) sind winkelversetzt zu den Wasserdüsen (20, 31) der zweiten Ebene (18) angeordnet. Mit der erfindungsgemäßen Vorrichtung kann das Schüttgut wirksam befeuchtet werden und es können Ablagerungen des Schüttguts aus dem Fallrohr entfernt werden. Die Erfindung betrifft außerdem ein entsprechendes Verfahren.
    • 本发明涉及一种用于润湿散装材料(11),特别是用于加湿植物过滤器的灰分。 形成,该装置包括一个输管(14)在其上端处,通过该散装材料(11)进入降液管(14)的入口(13),和在其下端的出口(16)由形成 散装材料(11)出现在湿润状态。 。根据本发明布置在所述立管的第一平面(17)(14)多个水喷嘴(20,31),并且是在降落管路的第二级(18)(14)多个水喷嘴(20,31) 布置。 所述第一平面(17)的水的喷嘴(20,31)成角度地偏移相对于所述第二平面(18)的水的喷嘴(20,31)。 利用本发明的装置中,散装材料可以有效地加湿,它可以从散装材料的落水管沉积物被去除。 本发明还涉及一种相应的方法。
    • 3. 发明公开
    • KÜHLER FÜR SCHÜTTGUT MIT EINER ABDICHTEINRICHTUNG ZWISCHEN BENACHBARTEN FÖRDERPLANKEN
    • COOLER对于批量与密封部件之间近域资金木板
    • EP2049858A1
    • 2009-04-22
    • EP07801601.1
    • 2007-08-10
    • Claudius Peters Technologies GmbH
    • DIKTY, MarioHILGRAF, PeterSTAAK, ThomasSPRINZ, UweMEYER, HartmutBOCK, UweKNABBE, JörnKOEBERER, Günther
    • F27D15/02B65G25/06
    • F28C3/16B65G25/065F26B17/26F27D15/0213F28F2230/00
    • The device for cooling bulk material with a gas, comprises rust flowed by cooling gas, and a layer of the bulk materials conveyed by a task end (4) in a conveying direction (50) to a delivery end (6). The rust comprises forwardly- and backwardly moved planks changing in the conveying direction and a sealing device is intended between adjoining planks. The adjoining planks have an external and internal sealing device spatially separated from each other. The sealing device has a chamber-free conveying channel running along the planks between the sealing devices. The device for cooling bulk material with a gas, comprises rust flowed by cooling gas, and a layer of the bulk materials conveyed by a task end (4) in a conveying direction (50) to a delivery end (6). The rust comprises forwardly- and backwardly moved planks changing in the conveying direction and a sealing device is intended between adjoining planks. The adjoining planks have an external and internal sealing device spatially separated from each other. The sealing device has a chamber-free conveying channel running along the planks between the sealing devices. A gas supply is formed for effecting a gas flow at the longitudinal of the conveying channel in order to convey bulk materials through one of the sealing devices incorporated to a delivery place. The delivery place is the external sealing device and is arranged at the delivery end. The rust is subdivided in the conveying direction into a sub chamber with several chambers, which are subjected with different gas pressure. A propellant source for the conveying channel is formed by a connection with one of the chambers. The propellant source has an increased pressure. The external or internal sealing device is formed by gap sealing or labyrinth sealing. One of the sealing devices is self-regulatingly carried out. The external sealing device is arranged deeply than the internal sealing device. The sealing device comprises a protrusive strip at a longitudinal edge to one of the planks and a thigh profile overlapped at the adjoining planks. The thigh profile with a free end of one of its thighs together with the strip forms a gap sealing, which functions as an external sealing device. The strip has a stage, whose flanks forms the labyrinth sealing with the free end of the thighs. The thigh profile has an additional thigh for forming a U-shaped profile, which is fastened at a superior cheek arranged at the adjoining planks. An additional strip is arranged at the adjoining planks. The additional strip forms the gap sealing with the strip, which functions as internal sealing device. The additional strip is formed as a L-shaped profile. The additional strip is arranged at a superior element of the adjoining planks, so that the internal sealing device is arranged higher than the external sealing device. The superior element is formed by the cheek. The internal sealing device is formed between an inner surface of the thigh profile and an additional plate arranged at the strip. A gas canal forms end plates projecting downwards at the longitudinal sides of the adjoining planks opposite to each other. The gas canal flows into the conveying channel over the internal sealing device. The conveying channel has a cross-section that is about 15-50 times so large as the width of the sealing device. The internal sealing device has a flow resistance, which is smaller than that of the external sealing device. The flow resistance is smaller around a factor of 2-50.
    • 4. 发明授权
    • KÜHLER FÜR SCHÜTTGUT MIT EINER ABDICHTEINRICHTUNG ZWISCHEN BENACHBARTEN FÖRDERPLANKEN
    • KÜHLERFÜRSCHÜTTGUTMIT EINER ABDICHTEINRICHTUNG ZWISCHEN BENACHBARTENFÖRDERPLANKEN
    • EP2049858B1
    • 2009-12-23
    • EP07801601.1
    • 2007-08-10
    • Claudius Peters Technologies GmbH
    • DIKTY, MarioHILGRAF, PeterSTAAK, ThomasSPRINZ, UweMEYER, HartmutBOCK, UweKNABBE, JörnKOEBERER, Günther
    • F27D15/02B65G25/06
    • F28C3/16B65G25/065F26B17/26F27D15/0213F28F2230/00
    • The device for cooling bulk material with a gas, comprises rust flowed by cooling gas, and a layer of the bulk materials conveyed by a task end (4) in a conveying direction (50) to a delivery end (6). The rust comprises forwardly- and backwardly moved planks changing in the conveying direction and a sealing device is intended between adjoining planks. The adjoining planks have an external and internal sealing device spatially separated from each other. The sealing device has a chamber-free conveying channel running along the planks between the sealing devices. The device for cooling bulk material with a gas, comprises rust flowed by cooling gas, and a layer of the bulk materials conveyed by a task end (4) in a conveying direction (50) to a delivery end (6). The rust comprises forwardly- and backwardly moved planks changing in the conveying direction and a sealing device is intended between adjoining planks. The adjoining planks have an external and internal sealing device spatially separated from each other. The sealing device has a chamber-free conveying channel running along the planks between the sealing devices. A gas supply is formed for effecting a gas flow at the longitudinal of the conveying channel in order to convey bulk materials through one of the sealing devices incorporated to a delivery place. The delivery place is the external sealing device and is arranged at the delivery end. The rust is subdivided in the conveying direction into a sub chamber with several chambers, which are subjected with different gas pressure. A propellant source for the conveying channel is formed by a connection with one of the chambers. The propellant source has an increased pressure. The external or internal sealing device is formed by gap sealing or labyrinth sealing. One of the sealing devices is self-regulatingly carried out. The external sealing device is arranged deeply than the internal sealing device. The sealing device comprises a protrusive strip at a longitudinal edge to one of the planks and a thigh profile overlapped at the adjoining planks. The thigh profile with a free end of one of its thighs together with the strip forms a gap sealing, which functions as an external sealing device. The strip has a stage, whose flanks forms the labyrinth sealing with the free end of the thighs. The thigh profile has an additional thigh for forming a U-shaped profile, which is fastened at a superior cheek arranged at the adjoining planks. An additional strip is arranged at the adjoining planks. The additional strip forms the gap sealing with the strip, which functions as internal sealing device. The additional strip is formed as a L-shaped profile. The additional strip is arranged at a superior element of the adjoining planks, so that the internal sealing device is arranged higher than the external sealing device. The superior element is formed by the cheek. The internal sealing device is formed between an inner surface of the thigh profile and an additional plate arranged at the strip. A gas canal forms end plates projecting downwards at the longitudinal sides of the adjoining planks opposite to each other. The gas canal flows into the conveying channel over the internal sealing device. The conveying channel has a cross-section that is about 15-50 times so large as the width of the sealing device. The internal sealing device has a flow resistance, which is smaller than that of the external sealing device. The flow resistance is smaller around a factor of 2-50.
    • 用气体冷却散装材料的装置包括由冷却气体流动的锈,以及由任务端(4)沿输送方向(50)输送到输送端(6)的一层散装材料。 锈包括在输送方向上改变的向前和向后移动的厚板,并且密封装置设置在邻接的厚板之间。 相邻的木板具有彼此空间分离的外部和内部密封装置。 密封装置具有沿密封装置之间的厚板延伸的无腔室输送通道。 用气体冷却散装材料的装置包括由冷却气体流动的锈,以及由任务端(4)沿输送方向(50)输送到输送端(6)的一层散装材料。 锈包括在输送方向上改变的向前和向后移动的厚板,并且密封装置设置在邻接的厚板之间。 相邻的木板具有彼此空间分离的外部和内部密封装置。 密封装置具有沿密封装置之间的厚板延伸的无腔室输送通道。 形成气体供应以在输送通道的纵向处实现气流,以便将散装材料输送通过结合到输送地点的密封装置中的一个。 交付地点是外部密封装置,并安排在交付端。 生锈在输送方向上被细分为具有多个腔室的子腔室,这些腔室受到不同的气压。 输送通道的推进剂源通过与其中一个室的连接而形成。 推进剂源的压力增加。 外部或内部密封装置通过间隙密封或迷宫式密封形成。 其中一个密封装置是自行执行的。 外部密封装置比内部密封装置深。 密封装置包括在纵向边缘处与板之一相交的大腿轮廓的重叠在相邻板上的突出条。 大腿轮廓与其大腿之一的自由端连同条带形成间隙密封,用作外部密封装置。 该带有一个阶段,其侧翼与大腿的自由端形成迷宫式密封。 大腿轮廓具有用于形成U形轮廓的附加大腿,该大腿轮廓固定在布置在相邻木板上的上颊部。 在相邻的木板上安排了一条附加条。 附加条带与条带形成间隙密封,用作内部密封装置。 附加条带形成为L形轮廓。 附加条被布置在邻接的板的上部元件上,使得内部密封装置被布置为高于外部密封装置。 高级元素由脸颊形成。 内部密封装置形成在大腿外形的内表面和布置在带上的附加板之间。 气体通道形成在相邻板条的纵向侧向下突出的彼此相对的端板。 气道通过内部密封装置流入输送通道。 输送通道的横截面大约为密封装置宽度的15-50倍。 内部密封装置的流动阻力小于外部密封装置的流动阻力。 流阻在2-50倍的范围内变小。
    • 5. 发明申请
    • VORRICHTUNG ZUM BEFEUCHTEN EINES SCHÜTTGUTS
    • DEVICE加湿散装
    • WO2011088842A1
    • 2011-07-28
    • PCT/EP2010/000282
    • 2010-01-19
    • CLAUDIUS PETERS PROJECTS GMBHDIKTY, MarioDEIMEL, DominikGREISER, Carsten
    • DIKTY, MarioDEIMEL, DominikGREISER, Carsten
    • F16L55/24
    • F16L55/24
    • Die Erfindung betrifft eine Vorrichtung zum Befeuchten eines Schüttguts, insbesondere zum Befeuchten von Kraftwerksfilteraschen. Die Vorrichtung umfasst ein Fallrohr (14). Am oberen Ende des Fallrohrs (14) ist ein Einlass (13) ausgebildet, durch den das Schüttgut in das Fallrohr (14) eintritt. Am unteren Ende des Fallrohrs (14) ist ein Auslass (16) ausgebildet, durch den das Schüttgut in befeuchtetem Zustand austritt. Es ist eine Wasserzuführung (20, 21, 22) zu dem Fallrohr (14) vorgesehen. Das Fallrohr (14) weist einen flexiblen Wandabschnitt (34) auf. Er findungs gemäß mündet die Wasserzuführung (20, 21, 22) in dem flexiblen Wandabschnitt (34) des Fallrohrs (14). Indem das Schüttgut erst im flexiblen Wandabschnitt (34) mit Wasser in Berührung kommt, werden Ablagerungen des Schüttguts verhindert.
    • 本发明涉及一种用于润湿散装产品,特别是用于加湿植物过滤器的灰分。 该装置包括落水管(14)。 在下降管(14)的上端,一个入口(13)由散装材料在溜子(14)的入口形成。 在所述立管(14)的下端,出口(16)形成,通过该散装物料流出的加湿状态。 有提供给落管(14)的水供给(20,21,22)。 落水管(14)具有一挠性壁部(34)。 他调查根据打开在溜子(14)的所述柔性壁部分(34)的供水(20,21,22)。 由块状材料直到所述柔性壁部分(34)进入与水接触时,能够防止散装材料的沉积物。