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直通式太阳能真空集热管的热性能研究 被引量:7
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作者 戴薇薇 王军 +2 位作者 苏中元 龚广杰 张耀明 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第1期104-109,共6页
综合考虑影响热损失模型的主要因素,建立了直通式太阳能真空集热管热损失及工质出口温度的数学模型,并提出了该模型的计算方法.利用美国国家可再生能源实验室(NREL)对Schott 2008 PTR70真空集热管的热性能测试结果进行验证,结果表明,热... 综合考虑影响热损失模型的主要因素,建立了直通式太阳能真空集热管热损失及工质出口温度的数学模型,并提出了该模型的计算方法.利用美国国家可再生能源实验室(NREL)对Schott 2008 PTR70真空集热管的热性能测试结果进行验证,结果表明,热损失模拟值与实验数据值的绝对误差都小于6 W/m,相对误差基本控制在4.5%以内,故建立的数学模型可靠.同时设计了直通式太阳能真空集热管热性能的计算界面,在输入外形、物理参数和气象信息时,可以较快、较准确地输出该集热管的热损失以及工质出口温度,从而进一步完善了真空集热管的热性能模型和计算方法,为指导集热管的设计提供了便利. 展开更多
关键词 直通式真空集 热损失数学模型 工质出口温度
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Mathematical Model Prediction of Heat Losses from a Pilot Sirosmelt Furnace
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作者 Yuhua Pan Michael A. Somerville 《Journal of Mechanics Engineering and Automation》 2015年第9期487-496,共10页
A mathematical model was developed for simulating heat transfer through the sidewall, bottom and top of a pilot scale TSL (Top-Submerged-Lance) Sirosmelt furnace. With a feed rate of about 50 kg/h, the furnace has b... A mathematical model was developed for simulating heat transfer through the sidewall, bottom and top of a pilot scale TSL (Top-Submerged-Lance) Sirosmelt furnace. With a feed rate of about 50 kg/h, the furnace has been used for investigating the technical feasibility of a variety of pyrometallurgical processes for smelting nonferrous and ferrous metals and for high temperature processing of solid wastes including electronic scraps, etc. The model was based on numerical solution of energy transport equations governing heat conduction in multi-layered linings in the sidewall, bottom and top lid of the furnace as well as convection and radiation of heat from the furnace outer surfaces to the ambient. Imperfect contacts between two neighboring solid lining layers due to air gap formation were considered. Temperature profiles were determined across the furnace bottom, top lid and three sections of the furnace sidewall, from which the heat loss rates through the corresponding parts of the furnace were calculated. The modelling results indicate that approximately 88% of heat is lost from the furnace sidewall, 7-8% from the bottom and 4-5% from the top lid. With increasing melt bath temperature, the proportion of total heat loss from the bottom decreases whereas that from the top lid increases and that from the sidewall is little changed. For a bath temperature of 1,300℃, total absolute heat loss rate from the furnace was found to be close to 12 kW. 展开更多
关键词 Heat transfer heat loss TSL SMELTING MODELLING simulation.
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