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    • 84. 发明公开
    • Stirling engine
    • 斯特林发动机
    • EP1400680A1
    • 2004-03-24
    • EP03020440.8
    • 2003-09-11
    • Isuzu Motors, Ltd.
    • Yamamoto, Yasushi, Isuzu Adv.Engineer.Cent.Ltd
    • F02G1/044F02G1/043
    • F02G1/0435F02G1/043F02G1/044
    • The invention relates to a Stirling engine that comprises:

      a displacer unit (2) having displacer cylinders (21 a, b), displacers (22 a, b) slidably arranged in the chambers of the displacer cylinders (21 a, b), expansion chambers and contraction chambers into which, and from which, the operation gas flows with the operation of the displacers (22 a, b); and
      a power piston unit (3) having a power cylinder (31) having an operation chamber communicated with either the expansion chamber or the contraction chamber of the displacer unit (2), and a power piston (32) slidably arranged in the power cylinder (31);
         wherein the displacer cylinders (21 a, b) of the displacer unit (2) are equipped with a heating wall (211) surrounding a heat source and cooling walls forming a plurality of cylinder chambers surrounding the heating wall (211); and
         the displacers (22 a, b) of the displacer unit (2) are slidably arranged in the plurality of cylinder chambers in the directions to approach the heat source and to separate away from the heat source.
    • 斯特林发动机技术领域本发明涉及斯特林发动机,其包括:具有置换器缸体(21a,21b)的置换器单元(2),可移动地布置在置换器缸体(21a,21b)的腔室中的置换器(22a, 随着置换器(22a,b)的操作,操作气体流入所述腔室和收缩腔室中; 和动力活塞单元(3),动力活塞单元(3)具有动力缸(31)和动力活塞(32),所述动力缸具有与所述置换单元(2)的膨胀室或收缩室连通的操作室,所述动力活塞可滑动地布置在动力缸 (31); 其中置换器单元(2)的置换器缸体(21a,b)配备有围绕热源的加热壁(211)和形成围绕加热壁(211)的多个缸室的冷却壁; 和置换器单元(2)的置换器(22a,b)在靠近热源的方向上可滑动地布置在多个缸室中并且远离热源分离。
    • 88. 发明公开
    • Thermal-energy conversion device
    • Vorrichtung zur Umwandlung von thermischer Energie
    • EP1116872A1
    • 2001-07-18
    • EP01200087.3
    • 2001-01-12
    • Claassen Energy Systems
    • Claassen, Petrus Johannes
    • F02G1/044
    • F02G1/044
    • The invention relates to a device (100) which comprises a cylinder (1) for a compressible medium with a displacement member (2) oscillating therein during operation, with a bypass line (3) through which the medium can flow back and forth during operation, and with cooling and heating means (4, 5), referred to as Stirling unit for short. A periodic pressure variation generated in the medium during operation results in a pressure difference between two vessels (6, 8) which are connected to the cylinder (1) via two non-return valves (7, 9). A load (L) is connected between the two vessels (6, 8).
      A device (100) according to the invention comprises at least a further vessel (12) and at least a further Stirling unit (20) connected in series between the Stirling unit (10) and the second vessel (8), while a first end (21A) of a further cylinder (21) of the further Stirling unit (20) is connected to the first end (1A) of the cylinder (1) of the Stirling unit (10), and a further non-return valve (13) opening at an intermediate pressure is present at least between the Stirling unit (10) and the further vessel (12), through which further non-return valve the medium can flow from the cylinder (1) of the Stirling unit (10) to the further vessel (12). Preferably, the load (L) is a pneumatic motor. The displacement members (2, 22) of the Stirling units (10, 20) are preferably provided with a pneumatic drive (A).
    • 本发明涉及一种装置(100),其包括用于可操作介质的气缸(1),其具有在运行期间在其中摆动的位移构件(2)的旁路管线(3),所述介质可在操作期间来回流动 ,以及冷却和加热装置(4,5),简称为斯特林装置。 在操作期间在介质中产生的周期性压力变化导致通过两个止回阀(7,9)连接到气缸(1)的两个容器(6,8)之间的压力差。 负载(L)连接在两个容器(6,8)之间。 根据本发明的装置(100)至少包括另外的容器(12)和至少另一个串联在斯特林单元(10)和第二容器(8)之间的斯特林单元(20),而第一端 另一个斯特林单元(20)的另一个气缸(21)的另一个止回阀(21A)连接到斯特林单元(10)的气缸(1)的第一端(1A) 至少在斯特林单元(10)和另外的容器(12)之间存在开口,通过该介质,介质可以从斯特林单元(10)的气缸(1)流出的进一步的止回阀到 另外的容器(12)。 优选地,负载(L)是气动马达。 斯特林单元(10,20)的位移构件(2,22)优选地设置有气动驱动器(A)。
    • 90. 发明公开
    • VUILLEUMIER HEAT PUNP DEVICE.
    • VUILLEUMIER热泵装置。
    • EP0629823A4
    • 1997-12-10
    • EP94902114
    • 1993-12-13
    • DAIKIN IND LTD
    • ISHINO TSUTOMUKITAMOTO MASAHIRO
    • F25B9/14F02G1/044
    • F02G1/0445F02G2250/18
    • A heat pump device composed of a high-temperature-side heat pump (2) comprising a high-temperature-side cylinder (21) which receives therein a high-temperature-side displacer (22), and a low-temperature-side heat pump (3) comprising a low-temperature-side cylinder (31) which receives therein a low-temperature-side displacer (32). Rods (23, 33) connected to the respective displacers (22, 23) are connected to each other by a coupling mechanism (4). Volume regulating means (8a) is provided for changing a volume in an intermediate-temperature space (35) in the low-temperature-side rod (33). In addition, volume control means (9a) is provided for detecting the number of revolutions of a crankshaft (42) on the coupling mechanism (4), calculating a volume in the intermediate-temperature space (35), which volume corresponds to the above number of revolutions, and controlling the volume regulating means (8a) such that the volume in the intermediate-temperature space (35) eqals the calculated volume. Thus an improvement of a net COP (coefficient of performance) is achieved.