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    • 12. 发明公开
    • STIRLING CYCLE MACHINES
    • 斯特林KREISPROZESSMASCHINEN
    • EP2802763A1
    • 2014-11-19
    • EP13700117.8
    • 2013-01-07
    • Isis Innovation Limited
    • DADD, Michael William
    • F02G1/043F02G1/044
    • F02G1/045F02G1/043F02G1/0435F02G1/044F02G1/055F02G1/057F02G2244/52
    • Stirling cycle machines, including engines and coolers or heat pumps are described. In a disclosed arrangement, there is provided a Stirling cycle engine, comprising: an expansion volume structure defining an expansion volume; a compression volume structure defining a compression volume; a gas spring coupling volume structure defining a gas spring coupling volume; a first reciprocating assembly comprising an expansion piston configured to reciprocate within the expansion volume and an expander gas spring piston rigidly connected to the expansion piston and configured to reciprocate within the gas spring coupling volume; and a second reciprocating assembly comprising a compression piston configured to reciprocate within the compression volume and a compressor gas spring piston rigidly connected to the compression piston and configured to reciprocate within the gas spring coupling volume, wherein the gas spring coupling volume structure and the first and second reciprocating assemblies are configured such that power is transferred in use from the expansion piston to the compression piston via the gas spring coupling volume.
    • 描述了斯特林循环机,包括发动机和冷却器或热泵。 在公开的布置中,提供了一种斯特林循环引擎,包括:限定膨胀体积的膨胀体积结构; 定义压缩体积的压缩体积结构; 限定气弹簧联接体积的气弹簧联接体结构; 第一往复运动组件包括构造成在膨胀容积内往复运动的膨胀活塞和刚性地连接到膨胀活塞并构造成在气弹簧联接容积内往复运动的膨胀器气弹簧活塞; 以及第二往复运动组件,其包括构造成在所述压缩体积内往复运动的压缩活塞和刚性地连接到所述压缩活塞并构造成在所述气弹簧联接容积内往复运动的压缩机气弹簧活塞,其中所述气弹簧联接体积结构以及所述第一和 第二往复运动组件构造成使得动力在使用中通过气弹簧联接体从膨胀活塞传递到压缩活塞。
    • 14. 发明公开
    • RESONANCE FREQUENCY ADJUSTING METHOD AND STIRLING ENGINE
    • 共振频率调整方法和斯特林发动机
    • EP1617156A1
    • 2006-01-18
    • EP04726277.9
    • 2004-04-07
    • SHARP KABUSHIKI KAISHA
    • TANAKA, Shozo
    • F25B9/14
    • F25B9/14F02G1/043F02G1/045F02G1/053F25B2309/001
    • With spacers (30, 31) held between the central portion and the circumference of two plate springs (61, 61), a fixed shaft (67) erected on a fixed block (70) is inserted in a through hole (64) in the periphery of the plate spring (61) and also in the spacer (31), and nuts (68, 68) are applied for tightening from above and below (step #1). Thereby, a displacer supporting spring (6) is fixed to the fixed block (70). And the threaded portion (2b) of a rod (2a) is inserted in a through hole (63) in the center of the plate spring (61) and also in the spacer (30) from the upper surface side of the upper plate spring (61), and a nut (32) is attached to the threaded portion (2b) projecting from the lower surface of the lower plate spring (61) so as to fix the displacer (2) to the upper surface side of the upper plate spring (61) (step #2). In this state, small vibration is applied to the displacer supporting spring (6) (step #3). And the resonance frequency is detected (step #4) and on the basis of this result, the spring constant of the displacer support spring (6) (the combined spring constant of the two plate springs (61, 61)) is calculated, and then an additional weight ΔWd reaching the target resonance frequency is calculated (step #5).
    • 在两个板簧(61,61)的中心部分和圆周之间夹有间隔件(30,31)的情况下,竖立在固定块(70)上的固定轴(67)插入到 (61)的周边以及间隔件(31)中,并且螺母(68,68)被施加用于从上方和下方拧紧(步骤#1)。 由此,置换器支撑弹簧(6)被固定到固定块(70)。 并且,杆(2a)的螺纹部(2b)从上板簧(5)的上表面侧插入板簧(61)的中央的通孔(63) (61)上,并且螺母(32)连接到从下板簧(61)的下表面突出的螺纹部分(2b),以将置换器(2)固定到上板的上表面侧 弹簧(61)(步骤#2)。 在这种状态下,对置换器支撑弹簧(6)施加小的振动(步骤#3)。 然后,检测共振频率(步骤#4),基于该结果计算置换器支承弹簧6的弹簧常数(两板簧61,61的合成弹簧常数) 然后计算达到目标共振频率的附加重量ΔWd(步骤#5)。
    • 15. 发明公开
    • Heat pump apparatus
    • Wärmepumpenvorrichtung。
    • EP0373792A1
    • 1990-06-20
    • EP89312453.7
    • 1989-11-30
    • SANYO ELECTRIC CO., LTD.
    • Osawa, SeiichiOshima, HironobuTerada, FusaoIshii, MorioSaito, Fumio
    • F02G1/045F25B9/14
    • F02G1/0445F02G1/045
    • A heat pump apparatus comprising: a heat pump circuit composed of an external combustion engine (1), a radiator (15) through which a first medium heated by a first heat exchanger (10, 9) of said external combustion engine (1) flows and a cooler (17) through which a second medium cooled by a second heat exchanger (12) of said external combustion engine (1) flows; a motor (28) for supplementing a motive power to said external combustion engine (1); a brake (29) for braking said external combustion engine (1); a detector (31) for detecting a heating load; and a controller (32) for calculating a motive power necessary for said external combustion engine (1) based on the difference between a value detected by said detector (31) and a preset value previously set, and for controlling said motor (28) to move when the calculated motive power is larger than a self-output of said external combustion engine (1).
    • 一种热泵装置,包括:由外燃机(1),散热器(15)构成的热泵回路,由所述外燃机(1)的第一热交换器(10,9)加热的第一介质通过该散热器流动 以及由所述外燃机(1)的第二热交换器(12)冷却的第二介质流过的冷却器(17)。 用于补充所述外燃机(1)的动力的马达(28); 用于制动所述外燃机(1)的制动器(29); 用于检测加热负载的检测器(31); 以及控制器(32),用于基于由所述检测器(31)检测到的值与预先设定的预设值之间的差异来计算所述外燃机(1)所需的动力,并且用于将所述电机(28)控制为 当所计算的动力大于所述外燃机(1)的自输出时移动。
    • 16. 发明公开
    • Machine thermique à source d'énergie externe ou interne aux cylindres du type compresseur ou moteur à cycle de Stirling par exemple
    • 用内部或外部电源井热力发动机,与压缩机型或斯特林循环类型的气缸。
    • EP0114781A1
    • 1984-08-01
    • EP84450002.5
    • 1984-01-13
    • GAZ DE FRANCEBras, Jean
    • Bras, Jean
    • F01C9/00F02G1/044F02G1/045
    • F02G1/043F01C9/002F01C11/004F02G1/044F02G1/045F02G2244/50
    • La présente invention concerne les machines thermiques à source d'énergie externe ou interne aux cylindres, du type compresseur ou moteur à cycle de stirling par exemple.
      La machine thermique selon l'invention est du type de celles comportant plusieurs chambres (1) dans chacune desquelles est monté un piston double effet (2) réalisant avec la dite chambre un capsulisme de détente (1A) et un capsulisme de compression (1B), les dites chambres étant raccordées de telle manière que chaque capsulisme de aetente (1A) réalisé par un ensemble chambre et piston soit en correspondance par un circuit de transfert approprié avec un capsulisme de compression réalisé avec un autre ensem- ble chambre et piston, le dit circuit de transfert étant traversé alternativement par une masse de gaz transférée d'une chambre à l'autre par les pistons, et les dits pistons étant dotes d'un bras (3) cooperant avec des moyens de transformation de leur mouvement alternatif en un mouvement circulaire communiqué à un arbre de sortie (4), la dite machine se caractérise essentiellement en ce que chaque capsulisme de detente (1A) d'un ensemble chambre et piston est en regard direct avec un capsulisme de compression (1B) d'un autre ensemble chambre et piston et que les chambres Ils sont reparties autour des moyens de transformation du mouvement des pistons et autour de l'arbre de sortie (4), chaque chambre (1 chaque piston (2) et chaque capsulisme ainsi realise etant en forme de secteur torique.
    • 20. 发明公开
    • RESONANCE FREQUENCY ADJUSTING METHOD AND STIRLING ENGINE
    • RESONANZFREQUENZEINSTELLVERFAHREN UND斯特林马达
    • EP1617156A4
    • 2006-07-12
    • EP04726277
    • 2004-04-07
    • SHARP KK
    • TANAKA SHOZO
    • F02G1/043F02G1/045F02G1/053F25B9/14H02K15/16
    • F25B9/14F02G1/043F02G1/045F02G1/053F25B2309/001
    • With spacers (30, 31) held between the central portion and the circumference of two plate springs (61, 61), a fixed shaft (67) erected on a fixed block (70) is inserted in a through hole (64) in the periphery of the plate spring (61) and also in the spacer (31), and nuts (68, 68) are applied for tightening from above and below (step #1). Thereby, a displacer support spring (6) is fixed to the fixed block (70). And the threaded portion (2b) of a rod (2a) is inserted in a through hole (63) in the center of the plate spring (61) and also in the spacer (30) from the upper surface side of the upper plate spring (61), and a nut (32) is attached to the threaded portion (2b) projecting from the lower surface of the lower plate spring (61) so as to fix the displacer (2) to the upper surface side of the upper plate spring (61) (step #2). In this state, small vibration is applied to the displacer support spring (6) (step #3). And the resonance frequency is detected (step #4) and on the basis of this result, the spring constant of the displacer support spring (6) (the combined spring constant of the two plate springs (61, 61)) is calculated, and then an additional weight ΔWd reaching the target resonance frequency is calculated (step #5).
    • 在两个板簧(61,61)的中心部分和圆周之间夹有间隔件(30,31)的情况下,竖立在固定块(70)上的固定轴(67)插入到 (61)的外围以及间隔件(31)中,并且螺母(68,68)被施加用于从上方和下方拧紧(步骤#1)。 由此,置换器支撑弹簧(6)被固定到固定块(70)。 并且,杆(2a)的螺纹部(2b)从上板簧(5)的上表面侧插入板簧(61)的中央的通孔(63) (61)上,并且螺母(32)连接到从下板簧(61)的下表面突出的螺纹部分(2b),以将置换器(2)固定到上板的上表面侧 弹簧(61)(步骤#2)。 在这种状态下,对置换器支撑弹簧(6)施加小的振动(步骤#3)。 然后检测共振频率(步骤#4),根据该结果计算置换器支承弹簧6的弹簧常数(两个板簧61,61的组合弹簧常数) 然后计算达到目标共振频率的附加重量ΔWd(步骤#5)。