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    • 1. 发明申请
    • HEAT EXCHANGER IN MODULAR DESIGN
    • 换热器模块结构
    • WO2010025960A3
    • 2010-06-17
    • PCT/EP2009006512
    • 2009-09-08
    • BALCKE DUERR GMBHBRUCKMANN WILHELMHEGNER WOLFGANGBAND DIRK
    • BRUCKMANN WILHELMHEGNER WOLFGANGBAND DIRK
    • F28D7/08F22B1/00F22B1/16F22B21/24F28D7/16F28F9/00
    • F28D7/08F22B21/00F28D7/1646F28D2021/0064F28F9/00F28F2009/0285
    • The invention relates to a heat exchanger (1) in modular design, particularly for systems operated with large changes of the load and/or temperature, having an outer jacket (70) and a plurality of heat exchanger modules, wherein each heat exchanger module, which is either a preheater (10), evaporator (20, 30, 40), or overheating module (50), comprises an inlet collector (11, 21, 31, 41, 51), an outlet collector (12, 22, 32, 42, 52), and pipes (120) extending in a meandering manner, through which the endothermic medium, particularly water, flows from the inlet collector (11, 21, 31, 41, 51) to the outlet collector (12, 22, 32, 42, 52), and further the heat exchanger modules are disposed in a common outer jacket (70) such that the same exothermic medium flows around them, wherein the evaporator modules (20, 30, 40) are connected in parallel via a steam drum (60) disposed outside of the outer jacket (70).
    • 本发明涉及一种模块化结构的换热器(1),特别是具有大的负载和/或温度变化供电设备,有一个外壳(70)和多个换热器模块,每个换热器模块,它可以是一个预热器(10),蒸发器 - (20,30,40)或过热器组件(50)是一个入口集管(11,21,31,41,51),一个出口集管(12,22,32,42,52)和蛇行管(120) 通过使吸热介质,特别是水,从进口集管(11,21,31,41,51)到所述出口收集器(12,22,32,42,52)中流动,并且进一步地,在一个共同的外护套的热交换模块(70) 被布置成使得它们被相同的发热介质流动,其中蒸发器模块(20,30,40)经由布置在蒸汽鼓(60)中的外壳(70)的外部并联连接。
    • 4. 发明专利
    • Heat exchanger for generating steam for solar power plants
    • AU2010321334B2
    • 2015-12-03
    • AU2010321334
    • 2010-10-25
    • BALCKE DUERR GMBH
    • BAND DIRKHEGNER WOLFGANGSTAHLHUT JORGTREGUBOW VITALI
    • F22B29/06F24V30/00F28D7/08
    • The invention relates to a heat exchanger for generating steam for solar power plants, comprising: an outer casing with an inlet and an outlet port for a heat-emitting medium; an inlet and an outlet collector for a heat-absorbing medium, preferably water, said inlet and outlet collectors lying substantially within the outer casing; and a tube bundle within the outer casing with a number of tube layers comprising continuous tubes, which are designed such that the heat-emitting medium can flow entirely around same and which are designed as flow paths for the heat-absorbing medium from the inlet collector to the outlet collector. The tube bundle is designed in a meandering manner, wherein the heat exchanger for generating steam is designed according to the forced-flow principle so that the heat-absorbing medium, which is fed into the inlet collector, is successively pre-heated, evaporated, and superheated in the course of the flow paths so that a superheated steam exits the outlet collector. The energy required for the pre-heating, evaporation, and superheating is essentially provided entirely by the heat transfer from the heat-emitting medium to the heat-absorbing medium within the heat exchanger.
    • 6. 发明专利
    • Heat exchanger for generating steam for solar power plants
    • AU2010321334A1
    • 2012-06-14
    • AU2010321334
    • 2010-10-25
    • BALCKE DUERR GMBH
    • BAND DIRKHEGNER WOLFGANGSTAHLHUT JORGTREGUBOW VITALI
    • F22B29/06F24V30/00F28D7/08
    • The invention relates to a heat exchanger for generating steam for solar power plants, comprising: an outer casing with an inlet and an outlet port for a heat-emitting medium; an inlet and an outlet collector for a heat-absorbing medium, preferably water, said inlet and outlet collectors lying substantially within the outer casing; and a tube bundle within the outer casing with a number of tube layers comprising continuous tubes, which are designed such that the heat-emitting medium can flow entirely around same and which are designed as flow paths for the heat-absorbing medium from the inlet collector to the outlet collector. The tube bundle is designed in a meandering manner, wherein the heat exchanger for generating steam is designed according to the forced-flow principle so that the heat-absorbing medium, which is fed into the inlet collector, is successively pre-heated, evaporated, and superheated in the course of the flow paths so that a superheated steam exits the outlet collector. The energy required for the pre-heating, evaporation, and superheating is essentially provided entirely by the heat transfer from the heat-emitting medium to the heat-absorbing medium within the heat exchanger.
    • 8. 发明专利
    • Refrigerador de aire de refrigeración para turbinas de gas, central de turbinas de gas o de turbinas de gas y de vapor, así como procedimiento para refrigerar aire de refrigeración
    • ES2672699T3
    • 2018-06-15
    • ES14003968
    • 2014-11-26
    • BALCKE DUERR GMBH
    • TELGEN THOMASSTAGGENBORG TIMBLOSSEY JENSBAND DIRKFIORENZANO DE ALBUQUERQUE RICARDOIVANOV IGORHEGNER WOLFGANG
    • F28F9/02F02C7/141F28D7/16F28D21/00F28F9/16F28F19/00
    • Refrigerador de aire de refrigeración para turbinas de gas para la refrigeración de aire de refrigeración con temperaturas de flujo de entrada a partir de 470 ºC en una turbina de gas en una central de turbinas de gas o en una central de turbinas de gas y de vapor, que comprende un intercambiador de calor de coraza y tubos (1) con una configuración de tubos rectos, comprendiendo el intercambiador de calor de coraza y tubos (1) - un recipiente a presión (26) con un revestimiento exterior (3), especialmente en esencia con forma de cilindro hueco, una placa tubular de entrada (2a) y una placa tubular de salida (2b) que definen conjuntamente un espacio interior (4) del recipiente a presión (26), - un haz de tubos rectos con un número de tubos rectos (5) que están dispuestos de forma que desembocan en la placa tubular de entrada (2a) y en la placa tubular de salida (2b) y tienen su recorrido por el espacio interior (4) del recipiente a presión (26), - una entrada (ES1) por la que un fluido primario que se debe refrigerar es conducido hasta la placa tubular de entrada (2a) y, desde esta, a los tubos rectos (5), y una salida (AS1), por la que el fluido primario refrigerado que parte de los tubos rectos (5) es evacuado a través de la placa tubular de salida (2b), - una entrada (ES2) por la que un fluido secundario es introducido en el espacio interior (4) con fines de refrigeración, y una salida (AS2) por la que el fluido secundario es evacuado desde el espacio interior (4), estando presente un escudo térmico (19) alojado antes de la placa tubular de entrada (2a) en la dirección de corriente del fluido primario, estando formados los tubos rectos (5) del intercambiador de calor de coraza y tubos (1) de un acero inoxidable ferrítico, estando dispuesto en cada tubo recto (5) del número de tubos rectos (5) un dispositivo de aislamiento térmico a la altura de la placa tubular de entrada (2a), y estando formado el revestimiento exterior (3) del recipiente a presión (26) de un acero no aleado.