中高温熔盐重力热管的传热性能OA
Heat Transfer Performance of Medium-and High-temperature Molten Salt Gravity Heat Pipes
分别以AlBr3和TiCl4作为传热工质,通过实验方法,研究工质、充注量、加热功率和热管倾斜角对熔盐重力热管传热性能的影响,以等效传热系数评价热管的传热性能.随着倾斜角增加,AlBr3、TiCl4热管的等效传热系数均呈现先增加后减小的趋势.随着充注量增加,AlBr3的最大等效传热系数降低,TiCl4热管的最大等效传热系数先升高后降低.加热功率影响热管的传热性能,在最佳热管倾斜角及最佳充注量下,随着加热功率增大,等效传热系数增大.充注量为100 g、热管倾斜角为60°、加热功率为2 450 W时AlBr3热管等效传热系数最大,达到16 500 W/(m2·K).充注量为40 mL、热管倾斜角为60°、加热功率为600 W时TiCl4热管等效传热系数最大,达到12 500 W/(m2·K).AlBr3热管的传热性能优于TiCl4热管,AlBr3热管更符合中温热管的技术要求.
Using AlBr3 and TiCl4 as heat trans-fer working fluids,the effects of working fluid,filling a-mount,heating power and heat pipe inclination angle on the heat transfer performance of molten salt gravity heat pipes are studied through experimental methods.The heat transfer performance of heat pipes is evaluated by equivalent heat transfer coefficient.As the inclina-tion angle increases,the equivalent heat transfer coeffi-cients of AlBr3 and TiCl4 heat pipes show a trend of first increasing and then decreasing.As the filling a-mount increases,the maximum equivalent heat transfer coefficient of AlBr3 heat pipe decreases,while the max-imum equivalent heat transfer coefficient of TiCl4 heat pipe first increases and then decreases.The heating power affects the heat transfer performance of the heat pipe.Under the optimal inclination angle and filling a-mount of the heat pipe,the equivalent heat transfer co-efficient increases with the increase of heating power.When the filling amount is 100 g,the inclination angle of the heat pipe is 60°,and the heating power is 2 450 W,the equivalent heat transfer coefficient of AlBr3 heat pipe is the highest,reaching 16 500 W/(m2·K).When the filling amount is 40 mL,the inclination angle of the heat pipe is 60°,and the heating power is 600 W,the equivalent heat transfer coefficient of TiCl4 heat pipe is the highest,reaching 12 500 W/(m2·K).The heat transfer performance of AlBr3 heat pipe is better than that of TiCl4 heat pipe,and AlBr3 heat pipe is more in line with the technical requirements of medium temperature heat pipe.
王慧慧;王辉祥;熊亚选;吴玉庭
北京京能热力发展有限公司通州分公司,北京 101100北京市热力集团有限责任公司西城分公司,北京 100032北京建筑大学供热供燃气通风及空调工程北京市重点实验室,北京 100044北京工业大学传热强化与过程节能教育部重点实验室,北京 100124
能源与动力
熔盐重力热管等效传热系数传热性能
molten saltgravity heat pipee-quivalent heat transfer coefficientheat transfer per-formance
《煤气与热力》 2024 (002)
9-15 / 7
国家自然科学基金(51206004);北京市自然科学基金重点项目(3151001)
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