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对管式加热炉流体阻力计算公式的商榷
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作者 李更来 钟甲学 《石油规划设计》 1994年第3期44-45,共2页
对ZBE97002-90附录A《管式加热炉工艺计算方法》中有关流体阻力计算公式中的问题提出探讨。
关键词 对管式加热炉 工艺设计 流体阻力 计算方法
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对管式加热炉最高管壁温度计算的讨论与评述
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作者 王嵩岐 《齐鲁石油化工》 1996年第1期61-64,共4页
对管式加热炉最高管壁温度计算的公式内涵提出讨论;分析评述公式的内涵,论述公式的应用;归纳最高管壁金属温度的计算程序;根据管式加热炉的具体情况,建议采用三种不同的计算方法。
关键词 加热炉 管壁温度 温度计算 对管式
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对于单管垂直式热水采暖系统中上供下回和下供上回连接方式的分析、比较
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作者 陈富强 《科技创新导报》 2008年第5期42-42,共1页
在室内供暖设计中,如何选择系统的供热形式,这对建筑物的综合经济指标,供热系统本身的运行及使用效果等有着极其重要的影响。
关键词 热水采暖 建筑
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Solar Oxidation and Removal of Arsenic from Groundwater Utilizing a Semicircular Section Tubular Photoreactor
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作者 Carlos Ramiro Escalera Omar Alberto Ormachea 《Journal of Environmental Science and Engineering(A)》 2012年第9期1071-1082,共12页
A semicircular section tubular photoreactor has been constructed, characterized and applied to the treatment of groundwater contaminated with As(V) by means of the SORAS (solar oxidation and removal of arsenic) te... A semicircular section tubular photoreactor has been constructed, characterized and applied to the treatment of groundwater contaminated with As(V) by means of the SORAS (solar oxidation and removal of arsenic) technique, using ferrous and citrate salts. The solar concentrator was built with recyclable waste materials: glass tubes from fluorescent lamps and 6-inch diameter PVC pipes cut in half and covered by aluminum foil. The reactor concentrates solar radiation up to 2.8 times its natural intensity. Batch irradiation experiments followed by controlled agitation (shear rate = 30-33 s^-1; 20 min agitation period) showed that the photoreactor accelerates the formation of settleable floccules (Dp 〉 0.5mm), compared with a fluorescent lamp glass tube alone and a 2 L PET (polyethylene terephthalate) bottle. Irradiation times necessary for floccule formation in the photoreactor, the fluorescent lamp tube and the PET bottle were 15 min, 25 min and 60 min, respectively. Continuous flow experiments using a photoreactor with a photo-collection area of 0.9 m^2 and a hydraulic retention time (equal to the irradiation time) of 15 rain showed that immediate formation of floccules of good settleability occurs when the solution is subjected to moderate agitation (33 s^-1). An efficiency of 98.36% for As(V) removal was obtained with a final concentration of 16.5 ktg/L in decanted waters. In accordance to these results, the photoreactor is able to treat approximately 130 L/m^2 within a 5-h period with UVA irradiation intensities of 50-70 W/mE. 展开更多
关键词 Tubular photoreactor arsenic removal SORAS (solar oxidation and removal of arsenic) GROUNDWATER flocculation.
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