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基于ANSYS的滚珠丝杠热平衡分析 被引量:8
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作者 董香龙 程寓 +1 位作者 何博侠 丁喜合 《组合机床与自动化加工技术》 北大核心 2014年第2期49-51,56,共4页
进给系统的热平衡时间和热平衡温度对机床加工的影响比较突出,以机床进给系统为对象,研究进给速度、预热程度、冷却液流量对热平衡时间及热平衡温度的影响。通过建立滚珠丝杠系统的热平衡分析的数学模型,应用ANSYS对其热特性仿真分析,... 进给系统的热平衡时间和热平衡温度对机床加工的影响比较突出,以机床进给系统为对象,研究进给速度、预热程度、冷却液流量对热平衡时间及热平衡温度的影响。通过建立滚珠丝杠系统的热平衡分析的数学模型,应用ANSYS对其热特性仿真分析,结果表明,增加进给速度可以尽快达到热平衡,但热平衡温度提高;高速空载进给预热,可使热平衡时间缩短75%;适宜的冷却液流量有助于降低热平衡温度缩短热平衡时间。分析结果也可为优化进给系统的散热结构和热补偿、减小系统的热变形,提供必要的依据。 展开更多
关键词 温度场 热平衡时间 冷却液制冷
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Aqueous ammonia solution cooling absorption refrigeration driven by fishing boat diesel exhaust heat 被引量:5
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作者 陈亚平 林陈敏 田莹 《Journal of Southeast University(English Edition)》 EI CAS 2010年第2期333-338,共6页
A solution cooling absorption(SCA)approach is proposed to modify the aqueous ammonia absorption refrigerat-ion cycle using the strong solution from the absorber to cool the forepart of the absorption in the cycle fo... A solution cooling absorption(SCA)approach is proposed to modify the aqueous ammonia absorption refrigerat-ion cycle using the strong solution from the absorber to cool the forepart of the absorption in the cycle for reclaiming some portion of absorption heat.As a consequence of raised temperature at the inlet,the strong solution partially boils at the outlet of the solution heat exchanger,and diminishes the thermal heat consumption of the heat source.The calculation results show that the coefficient of performance(COP)of this modified cycle is about 28.3% higher than that of the traditional cycle under typical conditions;while the required heat transfer area of the total heat exchangers of the cycle is somewhat less than that of the traditional one.The capacity of refrigeration with the new absorption cycle is more than doubled in contrast to the adsorption scheme with an identical configuration.It is sufficient to supply a fishing boat the chilling capacity for preservation of fishing products with the modified cycle chiller driven by its diesel engine exhaust. 展开更多
关键词 aqueous ammonia absorption refrigeration solution cooling absorption waste heat recovery heat and mass transfer coefficient of performance
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