Cogeneration system
    1.
    发明公开
    Cogeneration system 有权
    热电联产系统

    公开(公告)号:EP2053230A1

    公开(公告)日:2009-04-29

    申请号:EP08018603.4

    申请日:2008-10-23

    发明人: Yuri, Nobuyuki

    IPC分类号: F02G5/04 F01P5/00

    摘要: A cogeneration system allows an engine to continuously operate even when there is no demand for hot feedwater. The system comprises a hot water tank (23) for storing hot water heated from cold water by heat released by an engine (11) that drives a generator (13). When the heat of the water in the hot water tank exceeds a predetermined temperature, a control is performed so that a drain valve (37) is opened and the hot water in the tank is released.

    摘要翻译: 即使不需要热水,热电联产系统也可以使发动机持续运转。 该系统包括用于储存由冷水通过由驱动发电机(13)的发动机(11)释放的热量加热的热水的热水箱(23)。 当热水箱中的水的热量超过预定温度时,执行控制以打开排水阀(37)并释放水箱中的热水。

    MOTEUR TORIQUE DE REVOLUTION
    2.
    发明授权
    MOTEUR TORIQUE DE REVOLUTION 有权
    旋转环MOTOR

    公开(公告)号:EP1658422B1

    公开(公告)日:2007-05-30

    申请号:EP05775414.5

    申请日:2005-05-11

    IPC分类号: F01P5/00 F02C5/02

    摘要: The invention relates to a device enabling the explosion of hydrogen and air or oxygen in an enclosure, propelling disks fixed to a core (3). Any gaseous fluids can be supplied to said device consisting of at least two cannons (2) which are symmetrically arranged on a hollow core (1). The gases are introduced into the cannons by the pumps (58) and (59) and the valves controlled by the electromagnets (26) and (27), which are, in turn, controlled by an electromagnetic system comprising a lamp (30) illuminating a photoelectric cell (29) feeding the electronic switch (25). The ignition is carried out by the spark plug (18) fed by the coil (19) controlled by the photoelectronic system (24) comprising a lamp illuminating the photoelectric cell (20) which feeds the electronic switch (25). The admission disks (7) and the combustion disks (6), in pairs, and the symmetrical base of the cut-out core, are sealed by the segments (8) and (9) soldered to the summit of the disk hub and machined closely in relation to the hollow core (1). The angle of the disks (6) and (7) in relation to the marker (67) is such that, during the explosion, an idle current acts on the disk (7) while the jet acts on the disk (6). The cap of the cannons is spherical such that the spark plugs at the focus trigger parallel jets. The cooling is specific to the rotary motors and the engine brake.

    MOTEUR TORIQUE DE REVOLUTION
    4.
    发明公开
    MOTEUR TORIQUE DE REVOLUTION 有权
    旋转环MOTOR

    公开(公告)号:EP1658422A1

    公开(公告)日:2006-05-24

    申请号:EP05775414.5

    申请日:2005-05-11

    IPC分类号: F01P5/00 F02C5/02

    摘要: The invention relates to a device enabling the explosion of hydrogen and air or oxygen in an enclosure, propelling disks fixed to a core (3). Any gaseous fluids can be supplied to said device consisting of at least two cannons (2) which are symmetrically arranged on a hollow core (1). The gases are introduced into the cannons by the pumps (58) and (59) and the valves controlled by the electromagnets (26) and (27), which are, in turn, controlled by an electromagnetic system comprising a lamp (30) illuminating a photoelectric cell (29) feeding the electronic switch (25). The ignition is carried out by the spark plug (18) fed by the coil (19) controlled by the photoelectronic system (24) comprising a lamp illuminating the photoelectric cell (20) which feeds the electronic switch (25). The admission disks (7) and the combustion disks (6), in pairs, and the symmetrical base of the cut-out core, are sealed by the segments (8) and (9) soldered to the summit of the disk hub and machined closely in relation to the hollow core (1). The angle of the disks (6) and (7) in relation to the marker (67) is such that, during the explosion, an idle current acts on the disk (7) while the jet acts on the disk (6). The cap of the cannons is spherical such that the spark plugs at the focus trigger parallel jets. The cooling is specific to the rotary motors and the engine brake.

    Oil cooler with improved coolant hose connection
    5.
    发明公开
    Oil cooler with improved coolant hose connection 失效
    油冷却器用制冷剂管接头

    公开(公告)号:EP0809082A3

    公开(公告)日:1998-11-25

    申请号:EP97302884

    申请日:1997-04-24

    申请人: MODINE MFG CO

    发明人: HAASCH JAMES T

    摘要: An oil cooler (16) including an oil cooler housing (22) and a coolant hose connection (24) for transferring a coolant flow between a coolant hose (28) and the oil cooler housing (22), wherein the hose connection (24) changes the direction of the coolant flow through a predetermined angle after the coolant flow has entered the hose connection (24). The hose connection (24) includes a first opening (60) in the oil cooler housing (22) and a unitary piece of tubing (30) having first and second ends (32) and (34), a coolant opening (38) formed intermediate the ends (32) and (34) to transfer a coolant flow therethrough. The second end (34) is adapted for connection with the coolant hose (28) to transfer a coolant flow therewith. A flange (42) is formed around one of the coolant opening (38) and the first opening (60) and received in the other of the coolant opening (38) and the first opening (60).

    COOLING AND WARMING SYSTEM
    8.
    发明公开
    COOLING AND WARMING SYSTEM 审中-公开
    冷暖空调系统

    公开(公告)号:EP2564463A1

    公开(公告)日:2013-03-06

    申请号:EP11786981.8

    申请日:2011-04-27

    申请人: Scania CV AB

    发明人: KOLASA, Magnus

    摘要: Cooling and warming system for a device, which system comprises a cooling unit, a wanning unit, a temperature sensor adapted to detecting the temperature of the device and to delivering to a control unit a temperature signal based on temperatures detected, and a pipe system arranged to convey a medium for cooling and warming so that the device is respectively cooled and warmed. The system further comprises a reversible pump situated close to the pipe system and adapted to moving the medium in the pipe system in a first direction or in a second direction which is opposite to the first direction, depending on control signals from the control unit. A number of one-way valves are situated close to the respective cooling unit and warming unit in such a way that the flow through the oneway valves passes either the cooling unit or the warming unit, depending on the respective pump direction, the control unit being adapted to delivering to the pump, on the basis of the temperature signal, control signals to pump the medium in a first direction if the device is to be cooled and in a second direction if the device is to be warmed.