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    • 1. 发明申请
    • PLANT AND METHOD FOR THE SUPPLY OF ELECTRIC POWER AND/OR MECHANICAL POWER, HEATING POWER AND/OR COOLING POWER
    • 提供电力和/或机械动力的设备和方法,加热功率和/或冷却功率
    • WO2017158511A1
    • 2017-09-21
    • PCT/IB2017/051471
    • 2017-03-14
    • BRIOLA, Stefano
    • BRIOLA, Stefano
    • F01K23/02F01K25/08F01K17/06F01K17/02
    • F01K25/08F01K17/02F01K17/06F01K23/02F01K23/067F02C6/18Y02E20/14
    • The object of the present invention is a plant and related method for the supply to the end-user, by making use of the heating power transferred by any typology of heat source (traditional type e.g. gas, oil products, coal or renewable type e.g. biomass, solar, geothermal), simultaneously of electric power and/or mechanical power, heating power and cooling power ("Heating-Cooling" operating mode of the plant) or simultaneously of electric power and/or mechanical power and heating power only ("Heating" operating mode of the plant) or simultaneously of electric power and/or mechanical power and cooling power only ("Cooling" operating mode of the plant). The operation plant, according to each of said three operation modes, is obtained due to the regulation of several on-off valves and a flow rate regulation valve.
    • 本发明的目的是通过利用由任何类型的热源(传统类型例如气体,油类)传输的加热功率来向最终用户供应的设备和相关方法 (例如,生物质,太阳能,地热),同时具有电力和/或机械动力,加热动力和冷却动力(电厂的“加热 - 冷却”操作模式)或同时电力和/ 机械功率和加热功率(设备的“加热”操作模式),或者仅同时使用电力和/或机械功率和冷却​​功率(设备的“冷却”操作模式)。 根据所述三种操作模式中的每种操作模式,操作设备由于几个开关阀和流量调节阀的调节而获得。
    • 3. 发明申请
    • METHOD FOR PRODUCING ENERGY BY BURNING MATERIALS, AND FACILITY FOR IMPLEMENTING THE METHOD
    • 通过烧制材料生产能量的方法,以及实施方法的能力
    • WO2014195882A3
    • 2016-06-09
    • PCT/IB2014061946
    • 2014-06-04
    • SUEZ ENVIRONNEMENT
    • DUONG FRÉDÉRIC
    • F01K23/02F01K17/06F01K23/04
    • F01K23/02F01K23/04Y02E20/12
    • The invention relates to a method for producing energy by burning fuel materials, thereby giving off fumes, according to which a portion of the heat from the fumes is recovered by heat exchange with a thermal fluid flowing through a loop (12) which comprises an evaporator (13) which constitutes the heat source of a Rankine cycle energy recovery unit using an organic fluid, while the condenser (14) which is the heat sink of the Rankine cycle is supplied by a coolant which recovers heat from the condensation of the organic fluid. At least one portion of the coolant of the Rankine cycle condenser (14) flows in a closed circuit (24) and transmits heat to air for the burning the materials or to water for supplying a boiler.
    • 本发明涉及一种通过燃烧燃料来生产能量的方法,从而产生烟雾,根据该方法,通过与流过包括蒸发器的回路(12)的热流体进行热交换来回收来自烟雾的一部分热量, (13),其构成使用有机流体的兰金循环能量回收单元的热源,而作为兰金循环的散热器的冷凝器(14)由冷却剂提供,冷却剂从有机流体的冷凝中回收热量 。 兰金循环冷凝器(14)的冷却剂的至少一部分在闭合回路(24)中流动,并将热量传递到空气中以便燃烧材料或用于供应锅炉的水。
    • 8. 发明申请
    • 復水器、及びこれを備える蒸気タービンプラント
    • 冷凝器和蒸汽涡轮机提供
    • WO2014156686A1
    • 2014-10-02
    • PCT/JP2014/056718
    • 2014-03-13
    • 三菱日立パワーシステムズ株式会社
    • 堀田 克広
    • F22B1/18F01K9/00F28B1/02F28B3/04
    • F01K7/16F01K9/003F01K11/00F01K23/02F28B1/02F28D21/001F28F27/02
    •  復水器(30)は、伝熱管群(32)と、伝熱管群を覆う本体胴(35)と、蒸気タービン(3)からの排気蒸気(ES)を本体胴内の伝熱管群に導くための蒸気主流路(42)を形成する中間胴(41)と、蒸気タービンをバイパスした蒸気であるバイパス蒸気(BS)を受け入れ、本体胴内の伝熱管群に導くバイパス蒸気受入部(51)と、を備える。バイパス蒸気受入部(51)は、蒸気主流路(42)外に配置され、バイパス蒸気受入部(51)に対する本体胴(35)の開口は、蒸気主流路を経て伝熱管群中に排気蒸気(ES)が主として流入する流入領域(33)とは異なる領域(34)から伝熱管群(32)中にバイパス蒸気(BS)が主として流入する位置に形成されている。
    • 该冷凝器(30)具有以下部件:一组传热管(32); 覆盖所述传热管的主体(35); 形成用于将蒸汽涡轮(3)引导到主体中的传热管组的主蒸汽通道(42)的中间体(41) 以及接收旁路蒸汽(BS)的旁通蒸汽接收部(51),即旁通蒸汽涡轮的蒸汽,并将所述旁路蒸汽引导到主体中的一组传热管。 所述旁通 - 蒸汽接收部分51位于主蒸汽通道42的外部,并且连接到旁通蒸汽接收部51的主体35中的开口定位成使旁路 蒸汽(BS)主要从与排气(ES)主要流入一组热交换器的流入区域(33)的不同区域(34)流入该组传热管(32) 通过主蒸汽通道输送管。
    • 10. 发明申请
    • HIGH-TEMPERATURE ENERGY STORE HAVING A RECUPERATOR
    • 高储能调理
    • WO2013072085A3
    • 2013-11-14
    • PCT/EP2012067493
    • 2012-09-07
    • SIEMENS AGGRAEBER CARSTENBRUNHUBER CHRISTIANZIMMERMANN GERHARD
    • GRAEBER CARSTENBRUNHUBER CHRISTIANZIMMERMANN GERHARD
    • F01K23/02F01K13/00
    • F01K3/12F01K3/00F01K3/006F01K7/16F01K13/00F01K13/006F01K23/02Y02E70/30
    • The invention relates to a charging circuit (1) for converting electrical energy into thermal energy, having a compression stage (2), which is connected via a shaft (3) to an electric motor (4), a heat exchanger (5) and an expansion stage (6), which is connected via a shaft (7) to a generator (8), wherein the compression stage (2) is connected to the expansion stage (6) via a hot-gas line (9), and the heat exchanger (5) is connected on the primary side into the hot-gas line (9), wherein the expansion stage (6) is connected via a return line (11) to the compression stage (2), so that a closed circuit (12) for a working gas (13) is formed, wherein, furthermore, a recuperator (18) is provided which, on the primary side, is connected into the hot-gas line (9) between the heat exchanger (5) and the expansion stage (6) and, on the secondary side, is connected into the return line (11), so that heat from the working gas (13) in the hot-gas line (9) can be transferred to the working gas (13) in the return line (11).
    • 本发明涉及的充电电路(1),用于将电能转换为热能,与压缩级(2),其经由一轴(3)的电动马达(4),热交换器(5)和膨胀级(6)连接 经由轴(7)连接到发电机(8),其中,所述压缩级经由热气体管线的膨胀阶段(6)(9)(2)连接,并且该热交换器(5)的初级侧(热气体管道9 )连接,并且其中所述膨胀步骤(6)经由返回管线(11)到压缩阶段(2)连接,从而使闭合电路(12)(用于工作气体13)形成,其特征在于,进一步提供了一种同流换热器(18) 在热气线路的初级侧(9)被连接在热交换器(5)之间和所述膨胀级(6),并在回流管线(11)的次级侧,从而所述工作气体(13)中的热气体导管(9)至d的热 如在回流管线(11)的工作气体(13)是转让。