METHOD AND APPARATUS OF PRODUCING AND UTILIZING THERMAL ENERGY IN A COMBINED HEAT AND POWER PLANT
    1.
    发明申请
    METHOD AND APPARATUS OF PRODUCING AND UTILIZING THERMAL ENERGY IN A COMBINED HEAT AND POWER PLANT 审中-公开
    组合加热和发电厂生产和利用热能的方法与装置

    公开(公告)号:WO2012108757A2

    公开(公告)日:2012-08-16

    申请号:PCT/MY2012/000022

    申请日:2012-02-03

    Abstract: Method and apparatus for operating a combined heat and power system with greater flexibility, reliability, control and stability, for providing operational flexibility and energy efficiency in operating a combined heat and power plant which includes a backpressure steam engine that expands a high temperature heat source of a thermodynamic fluid to generate mechanical power and discharge its spent heat for a beneficial use comprises a vessel subsystem for the spent heat, said vessel subsystem including: at least one main indirect heat exchange device or vessel (7) in heat exchange communication between its primary space (10) and its secondary space (11). The present invention also discloses the use of a method and apparatus to operate a combined heat and power system.

    Abstract translation: 用于操作具有更大灵活性,可靠性,控制和稳定性的组合的热和电力系统的方法和装置,用于在组合的热电厂的操作中提供操作灵活性和能量效率,其包括背压蒸汽发动机,其将高温热源 用于产生机械功率并排出其用于有益用途的废热的热力学流体包括用于废热的容器子系统,所述容器子系统包括:至少一个主间接热交换装置或容器(7),其在其主要 空间(10)及其辅助空间(11)。 本发明还公开了一种用于操作组合的热和电力系统的方法和装置的用途。

    太阳能综合应用系统及其实现方法

    公开(公告)号:WO2013113267A1

    公开(公告)日:2013-08-08

    申请号:PCT/CN2013/070992

    申请日:2013-01-25

    Applicant: 俞琦

    CPC classification number: F01K3/08 F22B1/006 Y02B10/20 Y02E20/14

    Abstract: 一种太阳能综合应用系统及其实现方法,集太阳能聚焦、储能、发电、空调、热水供应多功能于一体,该系统具有一个以上太阳能集热装置、储热装置、蒸汽炉、余热发电机、中央空调及热交换器。太阳能集热装置吸收太阳热能并存入高温储热装置,利用其中热能驱动蒸汽炉产生蒸汽驱动余热发电机发电向电网输出,同时采用余热发电机的废汽驱动中央空调供暖,并利用空调排出的废液热交换加热生活用水,向用户提供开水或温水。应用本技术方案,通过合理的系统架构,使得太阳能热能通过分能级的应用装置得以高效率地综合利用,切实减少了能量流失的可能性;在缓解生活必须或工业生产所需能源方面的压力的同时也大幅减轻了对社会环境的破坏。

    TURBINE BYPASS SYSTEM
    4.
    发明申请
    TURBINE BYPASS SYSTEM 审中-公开
    涡轮旁路系统

    公开(公告)号:WO2012069369A1

    公开(公告)日:2012-05-31

    申请号:PCT/EP2011/070429

    申请日:2011-11-18

    Abstract: A turbine bypass system comprises a bypass path (10) which is selectively operable to deliver hot gases to a gas cooler (12) and a pebble bed (16) positioned in the bypass path (10) upstream of the gas cooler (12). The pebble bed (16) absorbs heat from the bypass gases and thereby reduces the temperature of the bypass gases prior to delivery of the bypass gases to the gas cooler (12).

    Abstract translation: 涡轮旁路系统包括旁路路径(10),其可选择性地操作以将热气体输送到气体冷却器(12)和位于气体冷却器(12)上游的旁路路径(10)中的卵石床)。 卵石床(16)从旁路气体吸收热量,从而在旁路气体输送到气体冷却器(12)之前降低旁路气体的温度。

    ELECTRIC POWER PLANT WITH THERMAL STORAGE MEDIUM
    5.
    发明申请
    ELECTRIC POWER PLANT WITH THERMAL STORAGE MEDIUM 审中-公开
    具有热存储介质的电力设备

    公开(公告)号:WO2006007733A1

    公开(公告)日:2006-01-26

    申请号:PCT/CA2005/001168

    申请日:2005-07-25

    Abstract: A power plant uses an energy source (1) to produce electricity in a first generator. The electricity from the first generator provides heat to a solid heat storage medium (2). The solid heat storage medium (2) is a heat exchanger and water is pumped through the solid heat storage medium to receive heat in order to convert the water into steam. The steam is then used to drive a set of second generators (4) to produce electricity. In this way, electricity can be produced using heat from the heat storage medium (2) whether or not the energy source (1) is operable. For example, if the energy source (1) is a wind turbine and the wind is not traveling at sufficient velocity to produce electricity, the heat storage medium can be used to convert water into steam, and reheat steam which is then used to generate electricity in a second generator (4).

    Abstract translation: 发电厂使用能源(1)在第一发电机中产生电力。 来自第一发生器的电力向固体储热介质(2)提供热量。 固体储热介质(2)是热交换器,水被泵送通过固体储热介质以接收热量,以将水转化为蒸汽。 蒸汽然后用于驱动一组第二发电机(4)以产生电力。 以这种方式,可以使用来自储热介质(2)的热量来产生能量源(1)是否可操作的电力。 例如,如果能量源(1)是风力涡轮机并且风没有以足够的速度行进以产生电力,则可以使用储热介质将水转化成蒸汽,并且再热再蒸发,然后将其用于发电 在第二发生器(4)中。

    ENERGIESPEICHER, KRAFTWERKSANLAGE MIT ENERGIESPEICHER UND VERFAHREN ZUM BETREIB DESSELBEN
    6.
    发明申请
    ENERGIESPEICHER, KRAFTWERKSANLAGE MIT ENERGIESPEICHER UND VERFAHREN ZUM BETREIB DESSELBEN 审中-公开
    储能的储能和方法转换器操作SAME电厂

    公开(公告)号:WO2016156321A1

    公开(公告)日:2016-10-06

    申请号:PCT/EP2016/056808

    申请日:2016-03-29

    Abstract: Die Erfindung betrifft einen Energiespeicher, eine Kraftwerksanlage mit einem derartigen Energiespeicher und ein Verfahren zum Betreib desselben. Der Energiespeicher weist einen Wärmetauscher auf, der auf einem vorzugsweise über eine erste Zuleitung mit Wasser befüllbarem, als See ausgebildetes Unterbecken schwimmend angeordnet ist, wobei über eine zweite Zuleitung Wasser aus dem Unterbecken und über eine dritte Zuleitung den Wärmetauscher durchdringendes Kühlmittel einer Wärmepumpe in getrennten Kreisläufen zuführbar ist, so dass Energie über den Wärmetauscher unter Vereisung des Wassers des Unterbeckens oder in Form von sensibler Wärme aus dem Wasser des Unterbeckens entnehmbar und an einen Verbraucher zur Wärmeabgabe und/oder zur Kälteabgabe weiterleitbar ist.

    Abstract translation: 本发明涉及一种能量存储,通过这样的能量存储装置和用于操作其的方法转换器的发电设备。 能量存储器包括经由与水的第一供应管线可填充在优选的热交换器,形成为湖下部容器设置浮动,其中,从下部储器和经由第三供应管线通过在单独的电路的热泵的热交换器紧急制冷剂的第二引线水 能够供给,从而使能量是通过在副盆地或在从副罐的水的显热的形式的水的结冰的热交换器可以被去除,并用于发射热和/或冷传送的消费者可路由。

    ENGINE ASSEMBLY COMPRISING AN INTERNAL COMBUSTION ENGINE AND A STEAM ENGINE
    9.
    发明申请
    ENGINE ASSEMBLY COMPRISING AN INTERNAL COMBUSTION ENGINE AND A STEAM ENGINE 审中-公开
    包括内燃机和蒸汽发动机的发动机组件

    公开(公告)号:WO1995035433A1

    公开(公告)日:1995-12-28

    申请号:PCT/SE1995000754

    申请日:1995-06-19

    CPC classification number: F01K3/08 F01K23/065

    Abstract: The invention relates to an engine assembly comprising an internal combustion engine (1) and a steam engine (7) connected to a driving assembly (23), and a heat exchanger (4), by which the heat losses from the internal combustion engine (1) is utilized for generation of steam to the steam engine (7). In order to obtain an engine assembly with small weight and size and small environmental harmful emission, but still being able to give high power output when required, the steam engine (7) is of displacement type, and excessive steam from the heat exchanger (4) which is not required for driving the steam engine (7) is arranged to be fed to a steam buffer (20), which is designed to emit a heavy flow of steam for short time periods, when required, to the steam engine (7).

    Abstract translation: 本发明涉及一种发动机组件,其包括内燃机(1)和连接到驱动组件(23)的蒸汽发动机(7)和热交换器(4),通过该热交换器将内燃机 1)用于向蒸汽发动机(7)产生蒸汽。 为了获得重量轻,尺寸小,环境有害排放小的发动机组件,但是在需要时仍能够提供高功率输出,蒸汽发动机(7)为排量型,来自热交换器(4)的过量蒸汽 )被配置为被供给到蒸汽缓冲器(20),所述蒸汽缓冲器(20)被设计成在需要时在短时间内向蒸汽发动机(7)发出大量蒸汽 )。

    HIGH TEMPERATURE THERMAL ENERGY EXCHANGE SYSTEM WITH HORIZONTAL HEAT EXCHANGE CHAMBER AND METHOD FOR EXCHANGING THERMAL ENERGY
    10.
    发明申请
    HIGH TEMPERATURE THERMAL ENERGY EXCHANGE SYSTEM WITH HORIZONTAL HEAT EXCHANGE CHAMBER AND METHOD FOR EXCHANGING THERMAL ENERGY 审中-公开
    具有水平热交换室的高温热能交换系统和换热方法

    公开(公告)号:WO2016050365A1

    公开(公告)日:2016-04-07

    申请号:PCT/EP2015/055953

    申请日:2015-03-20

    Abstract: High temperature thermal energy exchange system with horizontal heat exchange chamber and method for exchanging thermal energy by using the high temperature thermal energy exchange system A high temperature thermal energy exchange (heat) exchange system is provided. The high temperature thermal energy exchange system comprises at least one horizontal heat exchange chamber with chamber boundaries which surround at least one heat exchange chamber interior of the heat exchange chamber, wherein the chamber boundaries comprise at least one inlet opening for guiding in an inflow of at least one heat transfer fluid into the heat exchange chamber interior and at least one outlet opening for guiding out an outflow of the heat transfer fluid out of the heat exchange chamber interior, at least one heat storage material is arranged in the heat exchange chamber interior such that a heat exchange flow of the heat transfer fluid through the heat exchange chamber interior causes a heat exchange between the heat storage material and the heat transfer fluid and the heat high temperature thermal energy exchange system is developed such that horizontal heat exchange flows of the heat transfer fluid through the heat exchange chamber interior differ from each other in vertical direction. The horizontal heat exchange flows are different in vertical direction of the heat exchange chamber. The heat transfer fluid is led into heat exchange channels via the inlet openings and is led out of the heat exchange channels via the outlet openings. Preferably, the heat transfer fluid is air with ambient pressure. An operating temperature of the high temperature thermal energy exchange system is more than 600 °C.

    Abstract translation: 具有水平热交换室的高温热能交换系统和使用高温热能交换系统交换热能的方法提供了一种高温热交换(热)交换系统。 高温热能交换系统包括至少一个具有室边界的水平热交换室,其包围热交换室的至少一个热交换室内部,其中室边界包括至少一个入口,用于引导在 至少一个传热流体进入热交换室内部和至少一个出口开口,用于引导传热流体从热交换室内部流出,至少一个储热材料设置在热交换室内部 传热流体通过热交换室内部的热交换流导致储热材料和传热流体之间的热交换,并且开发热的高温热能交换系统,使得热量的水平热交换流动 传递流体通过热交换室内部彼此不同 垂直方向 水平热交换流在热交换室的垂直方向上是不同的。 传热流体经由入口开口被引入热交换通道,并经由出口开口从热交换通道引出。 优选地,传热流体是具有环境压力的空气。 高温热交换系统的工作温度超过600°C。

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