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    • 2. 发明申请
    • WASTE HEAT STEAM GENERATOR
    • 热回收蒸汽发生器
    • WO2010029033A3
    • 2010-06-10
    • PCT/EP2009061521
    • 2009-09-07
    • SIEMENS AGBRUECKNER JANFRANKE JOACHIMSCHMIDT HOLGERTHOMAS FRANK
    • BRUECKNER JANFRANKE JOACHIMSCHMIDT HOLGERTHOMAS FRANK
    • F22B15/00F22B21/00F22B37/26
    • F22B15/00F22B21/00F22B37/26
    • The invention relates to a waste heat steam generator (1) having a plurality of evaporator tubes (4) which are connected in parallel on the flow medium side, a plurality of overheating tubes (26) being mounted downstream of the evaporator tubes by means of a water separation system. Said water separation system comprises a number of water separating elements (12), each water separation element being respectively mounted downstream of a plurality of evaporator tubes (4) and/or upstream of a plurality of overheating tubes (26). Each water separating element (12) comprises an inlet pipe (14) which is respectively connected upstream to the evaporator tubes (4), said inlet pipe extending into a water evacuation pipe when seen in the longitudinal direction. A plurality of outflow pipes (18) branch off in the transitional area, said pipes being connected to a inlet collector (28) of the overheating tubes (26) which are respectively connected downstream. The aim of the invention is to provide said type of waste heat steam generator which is characterised in that it has a particularly high level of operational flexibility with comparatively low construction and reparation complexity. As a result, a distribution element (34) is arranged on the steam side between the respective water separating element (12) and the inlet collector (28).
    • 具有多个流动介质侧并联蒸发管(4)的热回收蒸汽发生器(1),其一些过热器管道(26)通过水分离器相连,水分离器包括多个Wasserabscheideelementen(12),其每一个的数中的每一个的 被蒸发器管(4)连接的下游和/或多个过热器管道(26),每一个的上游侧,所述Wasserabscheideelemente(12)包括一个与(4)连接Einströmrohrstück(14)看到的在其纵向方向(在Wasserableitrohrstück的相应的上游的蒸发器管 16)通过,其特征在于,在过渡区域中分支的数Abströmrohrstücken被连接(18)(与相应的下游的过热器管(26)的入口集管28),在特别高的操作灵活性,使与它相对低的建造和维修成本。 为了这个目的,各个Wasserabscheideelement(12)和所述入口集电体(28)之间的蒸汽侧被布置在分配器元件(34)。
    • 3. 发明申请
    • METHOD FOR OPERATING A CONTINUOUS FLOW STEAM GENERATOR
    • 方法操作连续蒸汽发生器和强制连续蒸汽发生器
    • WO2009150055A2
    • 2009-12-17
    • PCT/EP2009056469
    • 2009-05-27
    • SIEMENS AGBRUECKNER JANTHOMAS FRANKFRANKE JOACHIM
    • BRUECKNER JANTHOMAS FRANKFRANKE JOACHIM
    • F22B35/10
    • The invention relates to a method for operating a continuous flow steam generator comprising an evaporator heating surface (4), whereby a target value (Ms) for a supply water mass flow (M) is fed to a device for adjusting the supply water mass flow (M). In order to improve the quality of a predictive supply water or mass flow control and to maintain the enthalpy of the flow medium at the evaporator outlet particularly stable especially when load changes occur, a correction factor (K) is taken into consideration during production of the target value (Ms) for the supply water mass flow (M), said correction factor being characteristic of the temporal derivative of enthalpy or the density of the flow medium at the input of one or more heating surfaces (2, 4).
    • 在用蒸发器加热表面(4),其中,用于设置给水质量流量(M),所希望的值(MS),用于给水质量流量(M)的装置被提供操作连续蒸汽发生器的方法,预测给水流量或质量流量调节的质量是进一步 提高,流动介质的焓特别是在负荷变化的情况下被保持在蒸发器出口特别稳定。 为了这个目的,根据本发明中所希望的值(MS),用于给水质量流量(M),用于或者在一个或多个加热表面(2,4)被认为是特性校正值(K)的输入端的流动介质的密度的焓的时间导数的制备。
    • 6. 发明申请
    • METHOD FOR OPERATING A SOLAR-HEATED WASTE HEAT STEAM GENERATOR, AND SOLAR-THERMAL WASTE HEAT STEAM GENERATOR
    • 一种用于操作太阳能温水余热锅炉和太阳能热的热回收蒸汽发生器
    • WO2012110342A3
    • 2013-12-27
    • PCT/EP2012051920
    • 2012-02-06
    • SIEMENS AGBRUECKNER JANFRANKE JOACHIMTHOMAS FRANK
    • BRUECKNER JANFRANKE JOACHIMTHOMAS FRANK
    • F22B35/06F01K13/02F03G6/06F22B1/00F22B35/10F22G5/12F24S20/20
    • F22B1/006F01K13/02F03G6/067F22B35/10F22G5/12F24J2/07Y02E10/41Y02E10/46
    • The invention relates to a method for operating a solar-heated waste heat steam generator (1) comprising a number of heating surfaces (2, 4), whereby a target value (formula (II)) for the supply water mass flow (formula (I)) is fed to a device for adjusting the supply water mass flow (formula (I)). The aim of the invention is to further improve the quality of a predictive supply water or mass flow control and to maintain the enthalpy of the flow medium at the evaporator outlet particularly stable especially when load changes occur. To this end, a characteristic correction factor (KT) is taken into consideration during production of the target value (formula (II)) for the supply water mass flow (formula (I)), by means of which thermal storage effects of stored or withdrawn thermal energy into one or several heating surfaces (2, 4) are corrected. The method is particularly suitable for operating a solar-thermal waste heat steam generator (1) in a solar tower power station (129) with indirect evaporation.
    • 在操作具有多个加热表面的太阳能加热的热回收蒸汽发生器(1)(2,4),的方法,其中,用于设置给水质量流量(式(I))的目标值(式(II)),用于给水质量流量(式(a设备 I))被提供,预测或给水质量的质量流控制流动介质的焓为进一步改善,特别是发生负载的变化是在蒸发器出口保持特别稳定。 由(式(II)),用于给水质量流量(式(I))根据本发明,一个特性修正值考虑KT在所需值的制备中,由外存储的热能在一个或多个加热表面(2,4上或储热效应 )进行校正。 该方法特别适合于在太阳能塔电厂(129)与间接蒸发太阳能热的热回收蒸汽发生器(1)的操作。
    • 7. 发明申请
    • METHOD FOR OPERATING A ONCE-THROUGH STEAM GENERATOR AND FORCED-FLOW STEAM GENERATOR
    • 方法操作连续蒸汽发生器和强制连续蒸汽发生器
    • WO2009068446A3
    • 2010-07-15
    • PCT/EP2008065522
    • 2008-11-14
    • SIEMENS AGBRUECKNER JANFRANKE JOACHIMTHOMAS FRANK
    • BRUECKNER JANFRANKE JOACHIMTHOMAS FRANK
    • F22B35/10F22B37/38
    • F22B37/38
    • A method for operating a once-through steam generator having an evaporator heating surface (4), in which a target value (Ms) for the supply water mass flow (M) is fed to a device for setting the supply water mass flow (M), which is predefined by means of the ratio of the heat flow currently being transferred in the evaporator heating surface (4) from the hot gas to the flow medium on the one hand and a target enthalpy increase predefined with respect to the desired live steam condition of the flow medium in the evaporator heating surface (4) on the other hand, is intended to provided a forced-flow steam generator (1, 1`) particularly suited for carrying out the method. The heat flow transferred from the hot gas to the flow medium is ascertained for this purpose according to the invention allowing for a specific temperature value characteristic of the current temperature of the hot gas at the evaporator inlet and a specific mass flow value characteristic for the current mass flow of the hot gas.
    • 一种用于操作流体发生器的蒸汽用蒸发器erheizf笑(4),其中用于设定给水质量流量(M),所希望的值(MS),用于给水质量流量(M)的装置被馈送到电流的比的基础方法 蒸发器加热表面(4)从所述加热气体向在一方面流动介质传递的热量流量和预定的相对于所述流动介质在蒸发器加热表面(4),另一方面所需的蒸气状目标焓增加设置为,蒸汽特别适合于进行该方法一次通过 发电机(1,1`)状态。 为此目的,根据从加热气体传送到在考虑加热气体的当前温度的特性的在蒸发器入口温度特性值的流动介质的热流和燃料气体的质量流量特性值的当前质量流的特征的本发明来确定。
    • 8. 发明申请
    • METHOD FOR REGULATING A SHORT-TERM POWER INCREASE OF A STEAM TURBINE
    • 一种用于控制短期增加蒸汽涡轮机的功率
    • WO2012034876A3
    • 2013-02-28
    • PCT/EP2011065221
    • 2011-09-02
    • SIEMENS AGBRUECKNER JANTHOMAS FRANK
    • BRUECKNER JANTHOMAS FRANK
    • F01K23/10F01K13/02F22B1/18F22G5/12
    • F01K23/10F01K13/02F22B1/18F22G5/12Y02E20/16Y02P80/154
    • A method for regulating a short-term power increase of a steam turbine with an upstream waste-heat steam generator (1) having a number of economizer, evaporator and super heater heating surfaces (4) which form a flow path (2) and through which a flow medium (M) flows, in which flow medium (M) is tapped off from the flow path (2) in a pressure stage and is injected into the flow path on the flow medium side between two super heater heating surfaces (4) of the respective pressure stage, a first characteristic value, which is characteristic of a discrepancy between the outlet temperature of the final super heater heating surface on the flow medium side of the respective pressure stage and a predetermined temperature nominal value being used as a controlled variable for the amount of flow medium (M) injected, is intended not to affect excessively adversely the efficiency of the steam process.
    • 控制与上游热回收蒸汽发生器中的蒸汽涡轮机的功率的短期增加的方法(1)与形成流过节能器,蒸发器和过热器加热表面(4),其中,在一个压力级的流动介质(M)的数的流路(2)的 将从流路流动介质(M)(2)分支和两个之间stromungsmediumsseitig过热器加热表面(4)的流路的各自的压力阶段被注入,其特征在于,特性第一特性值作为stromungsmediumsseitig各压力级的最后过热器加热表面的出口温度的从预定的温度设定点的偏差 用于注射的流动介质(M)的量来控制变量时,应该不影响蒸汽过程的效率过度。
    • 9. 发明申请
    • WASTE HEAT STEAM GENERATOR
    • 热回收蒸汽发生器
    • WO2012034870A3
    • 2013-01-24
    • PCT/EP2011065176
    • 2011-09-02
    • SIEMENS AGBRUECKNER JANTHOMAS FRANK
    • BRUECKNER JANTHOMAS FRANK
    • F01K23/10F22G5/12
    • F01K21/00F01K23/101F22G5/12Y02E20/16Y02P80/154
    • A waste heat steam generator (1) for a gas- and steam-turbine power plant, having a number of economizer, evaporator and superheater heating surfaces (4) which form a flow path (2) and through which a flow medium (M) flows, in which waste heat steam generator an overflow line (20) branches off from the flow path (2) and leads to a number of injection valves (14) which are arranged downstream, at the flow medium side, of a superheater heating surface (4) in the flow path (2), should be particularly highly capable of permitting a brief power increase of a downstream steam turbine without this resulting in an excessive loss in efficiency of the steam process. At the same time, the brief power increase should be permitted independently of the type of waste heat steam generator. For this purpose, the branch location (22) of the overflow line (20) is arranged upstream of the first evaporator heating surface (4) at the flow medium side and downstream, at the flow medium side, of an economizer heating surface (4).
    • 一种热回收蒸汽发生器(1),用于与从所述流路形成流经节约器,蒸发器和过热器加热表面(4)的流动介质(M)的数的流路(2),其特征在于,溢流管线(20)的气体和蒸汽涡轮机发电设备 (2)分支并布置成若干流介质侧的后面的过热器加热表面(4)在流路(2)的喷射阀(14)导致在一个位置更是如此,以允许在输出一个短期增加的下游蒸汽涡轮机,而不会导致 蒸汽过程的效率过度地受到影响。 同时,短期业绩的改善应当有可能不管热回收蒸汽发生器的设计。 对于流动介质侧第一蒸发器加热表面(4)和所述流动介质侧节能器(4)的后面之前溢流管线(20)的这个目的,Abzweigort(22)。