共查询到16条相似文献,搜索用时 203 毫秒
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《低温与超导》2017,(8)
热声回热器是热声热机的重要部件。基于Rayleigh准则,提出回热器内流固之间的对流换热强度是影响热声热机整体性能的重要因素。利用改进的数值模型,模拟了平行板叠内回热器的速度与温度分布特性,并分析了板叠内部对流换热及整机性能之间的对应关系。此外,基于强化对流传热的场协同理论,提出了4种新型结构的异型回热器,并分别对其换热性能与热声转换性能进行了对比分析研究:表明采用混合型回热器的热声热机具有更优越的工作性能,输出声功的压力振幅较普通结构回热器可提高2.8%。研究结果验证了热声回热器内部对流换热强度与热声热机性能呈正相关性,通过改良回热器结构可有效提高热声热机的热声转换性能。 相似文献
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对制冷结露法空气取水器中的回热器进行了分析研究。该系统分别采用间壁式和混合式两种不同型式的空气回热器,并对两者分析比较。研究表明:在制冷结露法空气取水器系统的设计中,采用间壁式回热器要比混合式的取水效果更好。 相似文献
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In an open cycle traveling wave thermoacoustic engine, the hot heat exchanger is replaced by a steady flow of hot gas into the regenerator to provide the thermal energy input to the engine. The steady-state operation of such a device requires that a potentially large mean temperature difference exist between the incoming gas and the solid material at the regenerator's hot side, due in part to isentropic gas oscillations in the open space adjacent to the regenerator. The magnitude of this temperature difference will have a significant effect on the efficiencies of these open cycle devices. To help assess the feasibility of such thermoacoustic engines, a numerical model is developed that predicts the dependence of the mean temperature difference upon the important design and operating parameters of the open cycle thermoacoustic engine, including the acoustic pressure, mean mass flow rate, acoustic phase angles, and conductive heat loss. Using this model, it is also shown that the temperature difference at the regenerator interface is approximately proportional to the sum of the acoustic power output and the conductive heat loss at this location. 相似文献
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Biwa T 《Ultrasonics》2006,44(Z1):e1523-e1526
Where, how much and how efficiently the energy conversion takes place in a regenerator of a thermoacoustic engine are expressed using the axial distribution of acoustic work flow and heat flow. As a first step in determining the energy flows inside the regenerator, measuring methods of the work flow are briefly described and the experimental results in an acoustic resonator are shown. Applicability of these methods to the regenerator is discussed. 相似文献
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Huifang Kang 《中国物理 B》2022,31(3):34301-034301
The quantitative investigation of parameters in the renegerator is essential for the optimization of thermoacoustic devices, while the majority of the previous research only considered parameters of the working field, working gas and the hydraulic radius. Based on the linear thermoacoustic theory, this paper extracts a normalized parameter for low-amplitude conditions, which is called the regenerator operation factor. By extracting the regenerator operation factor and relative hydraulic radius, the influence of frequency on the efficiency can be controlled and offset. It can be found that thermoacoustic devices with different frequencies can perform the same efficiency by adjusting the radius in proportion to the axial length. Finally, this paper synthetically optimizes the dimension of the thermoacoustic regenerator by taking the regenerator operation factor, relative hydraulic radius and acoustic field parameter as variables. Conclusions in this paper are of great significance for explaining the best working conditions of engines and directing the miniaturization and optimal design of thermoacoustic devices. 相似文献