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    • 7. 发明授权
    • Exhaust gas treatment system and method, as well as ship comprising, and use of, such a system
    • 废气处理系统和方法,以及包括和使用这种系统的船舶
    • EP3037635B1
    • 2017-08-09
    • EP14199534.0
    • 2014-12-22
    • Alfa Laval Corporate AB
    • Mølgaard, SørenChristensen, Kenneth
    • F01N3/20F01N3/28F01N3/02
    • F01N3/2066B01D53/50B01D53/56B01D53/75B01D53/78B01D53/9418B01D2251/2067B01D2259/4566F01K5/00F01N3/0205F01N3/04F01N3/2006F01N5/02F01N2240/02F01N2590/02F01N2610/02F23J15/04F23J2219/10F23J2219/40Y02T10/16Y02T10/24Y02T10/26
    • A system and a method for treatment of engine exhaust gas (EEG) from an engine (3), which engine exhaust gas (EEG) has a temperature of between T 1 and T 2 , are provided. Provided are also a ship comprising such a system and a use of such a system. The system (1) comprises a SCR reactor (9) for converting NO x contained in a medium (M) containing the engine exhaust gas (EEG) into N 2 and H 2 O. The SCR reactor (9) has an inlet (33) for receiving the medium (M) and an outlet (35) for outputting the NO x reduced medium (M-NO x ). The system (1) is characterized in that it further comprises a mixing unit (7) and a first boiler unit (5). The first boiler unit (5) has a first outlet (19) for outputting boiler exhaust gas (BEG) from the first boiler unit (5), which boiler exhaust gas (BEG) has a temperature of more than T 3 , T3>T 1 . The mixing unit (7) is arranged to mix the engine exhaust gas (EEG) with the boiler exhaust gas (BEG) to produce said medium (M). The mixing unit (7) has a first inlet (27) communicating with the engine (3) for receiving the engine exhaust gas (EEG), a second inlet (29) communicating with the first outlet (19) of the first boiler unit (5) for receiving the boiler exhaust gas (BEG) and an outlet (31) for outputting said medium (M). The outlet (31) of the mixing unit (7) communicates with the inlet (33) of the SCR reactor (9).
    • 提供了一种用于处理来自发动机(3)的发动机排气(EEG)的系统和方法,该发动机排气(EEG)具有在T 1与T 2之间的温度。 还提供了包括这种系统的船舶以及这种系统的用途。 系统(1)包括SCR反应器(9),用于将包含发动机排气(EEG)的介质(M)中所含的NO x转化成N 2和H 2 O.CRS反应器(9)具有入口(33 )用于接收介质(M)以及用于输出NO x还原介质(M-NO x)的出口(35)。 系统(1)的特征在于它还包括混合单元(7)和第一锅炉单元(5)。 第一锅炉单元(5)具有用于从第一锅炉单元(5)输出锅炉排气(BEG)的第一出口(19),该锅炉排气(BEG)具有大于T 3的温度,T3> T 1。 混合单元(7)布置成将发动机排气(EEG)与锅炉排气(BEG)混合以产生所述介质(M)。 混合单元(7)具有与发动机(3)连通以接收发动机排气(EEG)的第一入口(27),与第一锅炉单元的第一出口(19)连通的第二入口(29) 5)用于接收锅炉废气(BEG)和用于输出所述介质(M)的出口(31)。 混合单元(7)的出口(31)与SCR反应器(9)的入口(33)连通。
    • 8. 发明公开
    • WASTE HEAT RECOVERY SYSTEM
    • 废热回收系统
    • EP3103975A1
    • 2016-12-14
    • EP15746099.9
    • 2015-02-02
    • Isuzu Motors Limited
    • ABE,Makoto
    • F01K13/02F01K23/06F01K23/10F01K25/10
    • H02J3/46F01K5/00F01K5/02F01K7/16F01K13/02F01K23/065F01K25/08F02G5/02Y02T10/166
    • Connected in parallel to an expander (3) and a condenser (4) of a Rankine cycle (6) are n sets (S) each of which comprises a different expander (E) and a different condenser (C). Moreover, operation stopping means (B 1 -B n ) are provided for stopping operations of the expanders (E 1 -E n ) in the sets (S 1 -S n ) connected in parallel, and a pressure sensor (10) and a temperature sensor (11) are installed respectively in an inlet and outlet of an evaporator (2). An ECU (12) sets or releases at least one of the operation stopping means (B 1 -B n ) such that a measured value (T) of the temperature sensor (11) reaches a prescribed temperature value (Ts) which is equal to or less than a thermal decomposition temperature of a refrigerant (5) and which is set in advance, and the ECU (12) controls a rotational speed of a refrigerant pump (1) such that a measured value (P) of the pressure sensor (10) reaches a prescribed pressure value (Ps) set in advance.
    • 与兰金循环(6)的膨胀机(3)和冷凝器(4)并联连接的n组(S)各包括不同的膨胀机(E)和不同的冷凝器(C)。 另外,为了停止并联连接的组(S1-Sn)中的扩展器(E1-En)的操作而设置操作停止装置(B1-Bn),并且压力传感器(10)和温度传感器(11)是 分别安装在蒸发器(2)的入口和出口处。 ECU(12)以使得温度传感器(11)的测量值(T)达到等于或小于预定温度值(Ts)的方式设置或释放操作停止装置(B1-Bn)中的至少一个 (12)对制冷剂泵(1)的转速进行控制,使得压力传感器(10)的测量值(P)与预先设定的制冷剂(5)的热分解温度相比较, 达到预先设定的规定压力值(Ps)。
    • 9. 发明公开
    • THERMOSTATIC FLOW CONTROL DEVICE AND METHOD OF USE
    • VERFAHREN ZUR VERWENDUNG热水器FLUSSSTEUERUNGSVORRICHTUNG
    • EP3062186A1
    • 2016-08-31
    • EP16156844.9
    • 2016-02-23
    • General Electric Technology GmbH
    • Magee, Jeffrey Fredrick
    • G05D23/02F16T1/00
    • F16K31/002F01K5/00G05D23/022
    • A flow control device is used to regulate fluid flow from an upstream supply source to a downstream destination within a plant. At least portions of the flow control device are fabricated from one or more thermostatic materials selected based on the specific thermostatic properties thereof. The basic arrangement of the flow control device includes at least one housing with at least one thermostatic beam and at least one wall fixed thereto to define a void interior area with opposed open ends, and a center plug member with at least one opening in at least one wall thereof arranged within the interior area for temperature dependent fluid flow therethrough.
    • 流量控制装置用于调节从上游供应源到工厂内的下游目的地的流体流量。 流量控制装置的至少一部分由基于其特定恒温特性选择的一种或多种恒温材料制成。 流量控制装置的基本布置包括具有至少一个恒温梁的至少一个壳体和固定到其上的至少一个壁以限定具有相对开口端的空隙内部区域,以及至少具有至少一个开口的中心塞构件 一个壁布置在内部区域内用于依赖于温度的流体流过其中。