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    • 3. 发明公开
    • Direct evaporator apparatus as well as system and method for energy recovery
    • 系统和Verfahren zurEnergierückgewinnung的Direktverdampfvorrichtung sowie
    • EP2348200A2
    • 2011-07-27
    • EP10176234.2
    • 2010-09-10
    • General Electric Company
    • Lehar, Matthew AlexanderFreund, Sebastian W.Frey, Thomas JohannesAumann, RichardAst, Gabor
    • F01K25/10F22B1/18F01K23/10F22B7/06F22B15/00
    • F22B1/1807F01K23/10F01K25/10F01N5/02F28D7/1623F28D21/001Y02E20/363Y02T10/16
    • A direct evaporator apparatus (10) for use in an organic Rankine cycle energy recovery system, comprising: (a) a housing (44) comprising a heat source gas inlet (36), and a heat source gas outlet (38), said housing defining a heat source gas flow path (46) from said inlet to said outlet; and (b) a heat exchange tube disposed entirely within said heat source flow path, said heat exchange tube (18) being configured to accommodate an organic Rankine cycle working fluid, said heat exchange tube comprising a working fluid inlet (40) and a working fluid outlet (42), said heat exchange tube defining three zones, a first zone (20) adjacent to said heat source gas outlet, a second zone (22) adjacent to said heat source gas inlet, and a third zone (24) disposed between said first zone and said second zone, said working fluid inlet being in direct fluid communication with said first zone, and said working fluid outlet being in direct fluid communication with said third zone; wherein said first zone is not in direct fluid communication with said third zone. An organic Rankine cycle energy recovery system and a method of energy recovery are also provided.
    • 一种用于有机朗肯循环能量回收系统的直接蒸发器装置(10),包括:(a)包括热源气体入口(36)和热源气体出口(38)的壳体(44),所述壳体 从所述入口到所述出口限定热源气体流动路径(46); 和(b)整个设置在所述热源流路内的热交换管,所述热交换管(18)构造成容纳有机朗肯循环工作流体,所述热交换管包括工作流体入口(40)和工作流体 流体出口(42),所述热交换管限定三个区域,与所述热源气体出口相邻的第一区域(20),邻近所述热源气体入口的第二区域(22)和设置在所述第二区域 在所述第一区域和所述第二区域之间,所述工作流体入口与所述第一区域直接流体连通,并且所述工作流体出口与所述第三区域直接流体连通; 其中所述第一区域不与所述第三区域直接流体连通。 还提供了有机朗肯循环能量回收系统和能量回收方法。
    • 7. 发明公开
    • A steam power generating system and method thereof
    • Dampfkraftwerkerzeugungssystem und Verfahrendafür
    • EP2894401A1
    • 2015-07-15
    • EP14152513.9
    • 2014-01-24
    • Taizhou Dajiang Ind. Co., Ltd.
    • Liu, GuiwenYang, MingjunHuang, Jinquan
    • F22B3/00F22B3/08F22B15/00
    • F01K27/00F22B1/288F22B3/00F22B3/08F22B15/00F22B29/061F24V40/00
    • The present invention discloses a steam power generating system, which includes thermal receptor with a cavity inside, entrance of liquid and exit of steam connected into the cavity of the thermal receptor and heat source; the said heat source is used to heat the cavity of the thermal receptor; the saturated water generating device and the saturated water explosive device are set inside the cavity of the thermal receptor, and the entrance of liquid, saturated water generating device, saturated water explosive device and exit of steam are connected successively; and a method of generating steam power, which includes the following steps: 1) making high-pressure liquid generate high-temperature saturated water; 2) making the high-temperature saturated water explode instantly when heated, so as to form the high-temperature and high-pressure steam flow. The type and quality of fuel is not strictly required for the device of the present invention, and thermal energy conversion efficiency is high; The scope of applicable engine is enlarged and the exhaust noise of the device is largely decreased than that of fuel internal combustion engine, and characteristic of torque is good, and even may not be required to install the gearbox to enable the automobile continuously variable speed when transportation power output, and less harmful ingredient of the exhausted gas; Simple structure of the device of the present invention, light weight, small size and easy to move.
    • 本发明公开了一种蒸汽发电系统,其包括内部具有空腔的热接收器,液体入口和连接到热接收器和热源的空腔中的蒸汽出口; 所述热源用于加热热接收器的空腔; 饱和水发生装置和饱和水爆炸装置设置在热接收器的腔内,液体,饱和水发生装置,饱和水爆炸装置和蒸汽出口的入口连续连接; 以及产生蒸汽动力的方法,包括以下步骤:1)使高压液体产生高温饱和水; 2)加热时使高温饱和水立即爆炸,形成高温高压蒸汽流。 对于本发明的装置,燃料的种类和质量不是严格要求的,并且热能转换效率高; 适用发动机的范围扩大,装置的排气噪声大大低于燃油内燃机,扭矩特性好,甚至可能不需要安装变速箱,使汽车连续变速 运输功率输出,排气有害成分少; 本发明装置结构简单,重量轻,体积小,便于移动。
    • 9. 发明公开
    • Abhitzedampferzeuger
    • EP2204611A1
    • 2010-07-07
    • EP08015864.5
    • 2008-09-09
    • Siemens Aktiengesellschaft
    • Brückner, JanFranke, JoachimSchmidt, HolgerThomas, Frank
    • F22B15/00F22B21/00F22B37/26
    • F22B15/00F22B21/00F22B37/26
    • Ein Abhitzedampferzeuger (1) mit einer Anzahl von strömungsmediumsseitig parallel geschalteten Verdampferrohren (4), denen über ein Wasserabscheidesystem eine Anzahl von Überhitzerrohren (26) nachgeschaltet ist, wobei das Wasserabscheidesystem eine Anzahl von Wasserabscheideelementen (12) umfasst, von denen jedes jeweils einer Anzahl von Verdampferrohren (4) nachgeschaltet und/oder einer Anzahl von Überhitzerrohren (26) vorgeschaltet ist, wobei jedes der Wasserabscheideelemente (12) ein mit den jeweils vorgeschalteten Verdampferrohren (4) verbundenes Einströmrohrstück (14) umfasst, das in seiner Längsrichtung gesehen in ein Wasserableitrohrstück (16) übergeht, wobei im Übergangsbereich eine Anzahl von Abströmrohrstücken (18) abzweigt, die mit einem Eintrittssammler (28) der jeweils nachgeschalteten Überhitzerrohre (26) verbunden sind, soll bei besonders hoher betrieblicher Flexibilität einen vergleichsweise geringeren Konstruktions- und Reparaturaufwand mit sich bringen. Dazu ist dampfseitig zwischen dem jeweiligen Wasserabscheideelement (12) und dem Eintrittssammler (28) ein Verteilerelement (34) angeordnet.
    • 发电机(1)具有通过水分离系统安装在蒸发器管(4)下游的过热管(26)。 分离系统包括安装在蒸发器管下游的T形水分离元件(12)。 每个分离元件包括当沿纵向方向观察时延伸到排水管(16)中的入口管(14)。 流出管(18)在过渡区域分支并连接到过热管的入口收集器(28)。 分配元件(34)布置在分离元件和收集器之间的蒸汽侧上。