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    • 7. 发明公开
    • Cryocooler interface sleeve for a superconducting magnet and method of use
    • KryokühlerSchnittstellenhülsefürsuperleitent Magnet und anwendungsverfahren
    • EP1279886A2
    • 2003-01-29
    • EP02076247.2
    • 2002-03-29
    • Applied Superconetics, Inc.
    • Sarwinski, Raymond E.Stonecipher, William E.Breneman, Bruce C.
    • F17C13/00H01F6/04F25D19/00
    • F25D19/006F17C13/006F17C2221/017F17C2223/0161F17C2227/0135F17C2227/0353F17C2270/0527F25B9/10F25B2309/1407H01F6/04
    • A method for cooling a superconducting device (16) by using a sleeve assembly (12) which thermally interconnects a two stage cryocooler (14) with the device. In operation, the cryocooler (14) is moveable relative to the sleeve assembly (12) between a first configuration wherein the cryocooler (14) is engaged with the sleeve assembly (12), and a second configuration wherein the cryocooler (14) is disengaged from the sleeve assembly (12). The cryocooler (14) is disposed in the sleeve assembly (12) with the cooling element (24) of the cryocooler (14) positioned at a distance from the cylinder (32) of the sleeve assembly (12) to establish thermal communication therebetween. Also, the cooling probe (26) of the cryocooler (14) is in contact with the receptacle (30) of the sleeve assembly (12) and is urged against the receptacle (30) to establish thermal communication therebetween. A bellows (28) joins the cryocooler (14) with the sleeve assembly (12) to create an enclosed chamber (50) therebetween and helium is pumped into the sleeve assembly (12) to maintain an operational pressure in the sleeve assembly (12).
    • 一种用于通过使套管组件(12)冷却超导装置(16)的方法,所述套筒组件使两级制冷器(14)与装置热连接。 在操作中,低温冷却器(14)可相对于套筒组件(12)在第一配置之间移动,其中低温冷却器(14)与套筒组件(12)接合,以及第二配置,其中低温冷却器(14)脱离 从套筒组件(12)。 低温冷却器(14)设置在套筒组件(12)中,冷却器(14)的冷却元件(24)定位在与套筒组件(12)的气缸(32)一定距离处,以在它们之间建立热连通。 此外,低温冷却器(14)的冷却探针(26)与套筒组件(12)的容器(30)接触并且被推靠在容器(30)上以在它们之间建立热连通。 波纹管(28)将低温冷却器(14)与套筒组件(12)连接以在其间形成封闭的腔室(50),并且将氦气泵送到套筒组件(12)中以保持套筒组件(12)中的操作压力, 。
    • 8. 发明公开
    • TWO FUNCTIONAL THERMAL DRIVING TRAVELING-WAVE THERMO-ACOUSTIC REFRIGERATION SYSTEM
    • THERMOAKUSTISCHE DOPPELFUNKTIONS-KÄLTEANLAGEMITWÄRMEANTRIEBSANSTEUERUNG
    • EP2781856A1
    • 2014-09-24
    • EP12763287.5
    • 2012-03-31
    • Lihan Thermoacoustic Technologies (Shenzhen) Co., Ltd
    • LUO, ErcangHU, JianyingWU, ZhanghuaYU, GuoyaoLI, Haibing
    • F25B9/00
    • F25B9/145F25B2309/1403F25B2309/1407F25B2309/1409F25B2309/1425F25B2309/1426
    • The present invention discloses a heat-actuated double-acting traveling-wave thermoacoustic refrigeration system, comprising at least three elementary units, wherein each elementary unit comprises a thermoacoustic engine, a thermoacoustic refrigerator, and a resonance device; the thermoacoustic engine and the thermoacoustic refrigerator comprise a main heat exchanger, a heat regenerator, a non-normal-temperature heat exchanger, a thermal buffer tube, and an auxiliary heat exchange in sequence; the resonance device comprises a sealed housing in which it is equipped with a moving part being in a reciprocating motion, wherein the moving part separates the housing into at least two chambers; the main heat exchanger and auxiliary heat exchanger of each thermoacoustic engine and thermoacoustic refrigerator respectively connects to chambers of different housing, forming a dual-loop structure of gas medium flow. In heating the non-normal-temperature heat exchanger of the thermoacoustic engine to produce acoustic power, thermoacoustic energy conversion is induced inside the thermoacoustic engine and the thermoacoustic refrigerator. Therefore, it is possible to produce refrigeration effect with heat input solely. The system can be applied in areas with abundant thermal energy and absence of electricity, thus being capable of a more extensive range of application.
    • 本发明公开了一种热致动双作用行波热声制冷系统,其包括至少三个基本单元,其中每个基本单元包括热声发动机,热声冰箱和谐振装置; 热声发动机和热声冷冻机依次包括主热交换器,热再生器,非常温热交换器,热缓冲管和辅助热交换器; 所述共振装置包括密封壳体,其中所述壳体配备有以往复运动的运动部件,其中所述运动部件将所述壳体分成至少两个腔室; 每个热声发动机和热声冰箱的主热交换器和辅助热交换器分别连接到不同壳体的腔室,形成气体介质流的双循环结构。 在加热热声发动机的非常温热交换器以产生声功率时,在热声发动机和热声冰箱内引起热声能转换。 因此,可以仅通过热输入产生制冷效果。 该系统可应用于热能充足,无电力的区域,能够应用范围更广。