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一种可蓄热太阳能睡床结构及性能分析
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作者 陆小涵 胡悦 《能源研究与信息》 CAS 2023年第4期250-257,共8页
介绍了一种兼具蓄热与散热两种状态的太阳能供暖用睡床。该睡床的下部为蓄热水箱,可从太阳能集热板获取热量供给睡床。研究了基于该睡床的供暖系统在北京地区的应用情况,并分析了不同状态下床板上表面的散热量与被褥内的温度。结果表明... 介绍了一种兼具蓄热与散热两种状态的太阳能供暖用睡床。该睡床的下部为蓄热水箱,可从太阳能集热板获取热量供给睡床。研究了基于该睡床的供暖系统在北京地区的应用情况,并分析了不同状态下床板上表面的散热量与被褥内的温度。结果表明:在全天散热状态下,典型年供暖季集热器效率为37.7%,复合型睡床的有效供热量为4390.2 MJ,太阳能保证率为80.7%;在白天保温-夜间散热下,集热器效率为33.1%,复合型睡床的有效供热量为4441.1 MJ,太阳能保证率为81.8%。 展开更多
关键词 蓄热-散热复合型睡床 太阳能供暖 散热状态 保温状态 太阳能保证率
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对教材中电饭锅保温功率的商榷
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作者 董锡金 《中学物理教学参考》 2023年第4期60-62,共3页
对教材中一道关于电饭锅的习题进行了分析,题中假设保温状态下的功率是加热状态下的一半,不符合电饭锅实际情况.用实例加以论证,并提出修改意见.
关键词 电饭锅 保温状态 功率
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Application of high temperature heat pipe in hypersonic vehicles thermal protection 被引量:9
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作者 白穜 张红 许辉 《Journal of Central South University》 SCIE EI CAS 2011年第4期1278-1284,共7页
In order to develop further the application of high temperature heat pipe in hypersonic vehicles thermal protection, the principles and characteristics of high temperature heat pipe used in hypersonic vehicles thermal... In order to develop further the application of high temperature heat pipe in hypersonic vehicles thermal protection, the principles and characteristics of high temperature heat pipe used in hypersonic vehicles thermal protection were introduced. The methods of numerical simulation, theory analysis and experiment research were utilized to analyze the frozen start-up and steady state characteristic of the heat pipe as well as the machining improvement for fabricating irregularly shaped heat pipe which is suitable for leading edge of hypersonic vehicles. The results indicate that the frozen start-up time of heat pipe is long (10 min) and there exists large temperature difference along the heat pipe (47 ℃/cm), but the heat pipe can reduce the temperature in stagnation area of hypersonic vehicles from 1 926 to 982 ℃ and work normally during 1 000-1 200℃. How to improve the maximum heat transfer capability and reduce the time needed for start-up from frozen state of the heat pipe by optimizing thermostructure such as designing of a novel wick with high performance is the key point in hypersonic vehicles thermal protection of heat pipe. 展开更多
关键词 thermal protection high temperature heat pipe heat transfer limit start-up time
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