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脈動熱管的理論研究與應用新進展

New progress in the theoretical research and application of pulsating heat pipe

  • 摘要: 作為一種工作機理獨特的新型傳熱裝置,脈動熱管具有極高的傳熱效率、較高的抗燒干能力、良好的環境適應性,且結構簡單、可變,成本較低,具有很高的實際應用價值,是目前傳熱技術領域的研究熱點.本文在對脈動熱管的優點、結構形式和工作原理進行總體介紹的基礎上,首先從理論建模研究入手歸納了目前研究中通常采用的直管、單彎頭管、部分單彎頭管等結構模型和質量-彈簧-阻尼模型,質量、動量、能量方程模型以及其他數學模型,然后從實驗可視化研究和計算可視化研究兩方面綜述了脈動熱管的運行過程、工作機理以及近年來國內外在脈動熱管方面的最新研究進展,從啟動性能、傳熱性能和傳熱極限三方面系統介紹了管徑、長度、截面形狀、加熱方式、充液率、傾斜角度、輸入功率和工作流體種類等不同設計和使用參數對脈動熱管性能的影響.進一步從設計與應用方面,對脈動熱管在電子設備、太陽能集熱、動力裝置熱管理和低溫環境換熱等方面的研究進行了綜述,展示了脈動熱管在實際應用中的效果和優勢.最后對今后的研究方向與發展趨勢進行了展望,指出可通過更詳細的理論和仿真建模研究脈動熱管的工作機理、工作性能、工作過程和優化設計方法.

     

    Abstract: As a new type of heat transfer device with a unique working mechanism, the pulsating heat pipe (PHP) has high heat transfer efficiency, high resistance capability to drying out, and good environmental adaptability. Its structure is simple and variable, and the cost is low. Thus, the pulsating heat pipe has a good value for practical application and is currently a research hotspot in the field of heat transfer technology. On the basis of the introduction of the general advantages, structure types, and working principle of the pulsating heat pipe, this study first summarized the structure models, such as the straight tube, single elbow tube, and partially single elbow tube, and the theoretical models, such as the mass-spring-damping model, mass-momentum-energy equation model, and other mathematical models, commonly used in the current theoretical modeling research. Then, the operational process, working mechanism, and latest research progress in pulsating heat pipes at home and abroad were reviewed from the aspects of experimental and computational visualization research. The influence of different design and use parameters, such as pipe diameter and length, shape of the section, heating method, filling rate, angle of inclination, input power, and type of working fluid, on the start-up performance, heat transfer performance, and heat transfer limit of the pulsating heat pipe was systematically introduced. Furthermore, from the design and application perspectives, the research on pulsating heat pipes applied in electronic equipment, solar energy collection, thermal management of power unit, and heat exchange in low-temperature environment was reviewed, and the effects and advantages of pulsating heat pipes in practical application were demonstrated. Finally, the future research directions and development trends were forecasted. It is pointed out that the working mechanism, working performance, working process, and optimization design method of pulsating heat pipes can be investigated through a more detailed theoretical and simulation modeling.

     

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