本文提出一种可利用低品位热能的热驱动直连型热声制冷机,它包含二个相同的基本单元,每个单元由直接相连的热声发动机、热声制冷机、谐振管和空腔连接。谐振管和空腔可以实现单元之间的相位调节。本文重点考察了谐振管与空腔组成的调相...本文提出一种可利用低品位热能的热驱动直连型热声制冷机,它包含二个相同的基本单元,每个单元由直接相连的热声发动机、热声制冷机、谐振管和空腔连接。谐振管和空腔可以实现单元之间的相位调节。本文重点考察了谐振管与空腔组成的调相机构对发动机和制冷机的回热器进出口相位角、声功以及制冷系数的影响规律,以期指导将来实验装置的设计。计算结果表明:在环境温度50?C,热端温度300?C,制冷温度10?C的条件下,整机可获得5.8 k W的制冷量,制冷系数达到了0.48。展开更多
In this paper, an experimental investigation of a traveling-wave thermoacoustic electricity generator, which consists of a traveling-wave thermoacoustic heat engine and a linear alternator driven by that engine, is pr...In this paper, an experimental investigation of a traveling-wave thermoacoustic electricity generator, which consists of a traveling-wave thermoacoustic heat engine and a linear alternator driven by that engine, is presented. Using the results of previous theoretical and experimental research, we designed and fabricated a traveling-wave thermoacoustic heat engine and a linear alternator. In the experiments, 450.9 W of electrical power was obtained with a maximum thermal-to-electrical efficiency of 15.03%, and a maximum electrical power of 481.0 W was achieved with 12.65% thermal-to-electrical efficiency.展开更多
Experimental investigation on a traveling-wave thermoacoustic electricity generator is presented. In the experiment, more than 100 W electrical power was achieved under 2.5 MPa mean pressure, 64 Hz working frequency a...Experimental investigation on a traveling-wave thermoacoustic electricity generator is presented. In the experiment, more than 100 W electrical power was achieved under 2.5 MPa mean pressure, 64 Hz working frequency and 0.2 MPa pressure amplitude.展开更多
The working principle of an efficient travelling- wave thermoacoustic refrigerator operating in room-tem- perature range has been analyzed and an experimental set-up has been built. The experiment showed that suppress...The working principle of an efficient travelling- wave thermoacoustic refrigerator operating in room-tem- perature range has been analyzed and an experimental set-up has been built. The experiment showed that suppress- ing DC-flow streaming was very critical to efficient operation, and an elastic membrane was used to solve the problem suc- cessfully. At the most efficient operating point, the novel thermoacoustic refrigerator achieved a cooling capacity of about 80 W at ?20℃, with a much higher efficiency than previously developed standing-wave thermoacoustic refrig- erator.展开更多
文摘本文提出一种可利用低品位热能的热驱动直连型热声制冷机,它包含二个相同的基本单元,每个单元由直接相连的热声发动机、热声制冷机、谐振管和空腔连接。谐振管和空腔可以实现单元之间的相位调节。本文重点考察了谐振管与空腔组成的调相机构对发动机和制冷机的回热器进出口相位角、声功以及制冷系数的影响规律,以期指导将来实验装置的设计。计算结果表明:在环境温度50?C,热端温度300?C,制冷温度10?C的条件下,整机可获得5.8 k W的制冷量,制冷系数达到了0.48。
基金supported by the National Basic Research Program of China (2010CB227303)the National Natural Sciences Foundation of China (50707034)
文摘In this paper, an experimental investigation of a traveling-wave thermoacoustic electricity generator, which consists of a traveling-wave thermoacoustic heat engine and a linear alternator driven by that engine, is presented. Using the results of previous theoretical and experimental research, we designed and fabricated a traveling-wave thermoacoustic heat engine and a linear alternator. In the experiments, 450.9 W of electrical power was obtained with a maximum thermal-to-electrical efficiency of 15.03%, and a maximum electrical power of 481.0 W was achieved with 12.65% thermal-to-electrical efficiency.
基金Supported by the National Natural Science Foundation of China (Grant Nos. 50536040 and 50625620)
文摘Experimental investigation on a traveling-wave thermoacoustic electricity generator is presented. In the experiment, more than 100 W electrical power was achieved under 2.5 MPa mean pressure, 64 Hz working frequency and 0.2 MPa pressure amplitude.
基金supported by the Key Project of the National Natural Science Foundation of China(Grant No.50536040)Chinese Academy of Sciences(Grant No.KJCX2-SW-W12-01)
文摘The working principle of an efficient travelling- wave thermoacoustic refrigerator operating in room-tem- perature range has been analyzed and an experimental set-up has been built. The experiment showed that suppress- ing DC-flow streaming was very critical to efficient operation, and an elastic membrane was used to solve the problem suc- cessfully. At the most efficient operating point, the novel thermoacoustic refrigerator achieved a cooling capacity of about 80 W at ?20℃, with a much higher efficiency than previously developed standing-wave thermoacoustic refrig- erator.