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基于DCS控制危废焚烧线回转窑窑头点火系统的优化及应用
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作者 王建鑫 蒋海鹤 +5 位作者 张增朝 刘凯 余卫东 林野 王贵 安会彬 《当代化工研究》 2020年第12期62-63,共2页
本文介绍一套DCS控制系统模块,通过工艺要求和程序判断应用于危废焚烧线回转窑窑头点火系统的工艺逻辑控制,实现危废焚烧线回转窑窑头点火系统的自动控制、安全点火,避免因人为误操作导致烘炉、起炉时引起安全事故,甚至闪爆危险.
关键词 危废焚烧线 点火系统 DCS 优化 应用
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分流式微通道换热器的结构设计和性能优化 被引量:4
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作者 马圣洁 江海河 程庭清 《工程热物理学报》 EI CAS CSCD 北大核心 2023年第5期1296-1303,共8页
为满足电子电路、燃料电池、激光器等精密仪器及器件的持续高效散热需求,本文设计了一种基于冲击流动的分流式正弦型微通道换热器,传热效率更高,压降损失更小,加工工艺更简单。本研究主要通过热–流–固耦合的数值模拟方法,对比了微通... 为满足电子电路、燃料电池、激光器等精密仪器及器件的持续高效散热需求,本文设计了一种基于冲击流动的分流式正弦型微通道换热器,传热效率更高,压降损失更小,加工工艺更简单。本研究主要通过热–流–固耦合的数值模拟方法,对比了微通道宽度、深度、形状及分流结构对换热器传热和流动特性的影响。模拟结果表明:带有8个分流通道的分流式正弦型微通道换热器的综合性能最好,微通道长、宽、深尺寸为30 mm×0.4 mm×2.5 mm,在冷却液流量为0.6 mL·s^(-1)时,总热阻为0.247℃·W^(-1)。在实际工作中,换热器总热阻为0.395?C·W^(-1),压降损失也较小,所得实验结果与模拟结果基本吻合,相比于预设计的换热器和大通道换热器,优化后的正弦型微通道换热器在传热和流动性能方面均获得了显著提升。 展开更多
关键词 分流式微通道 换热器 结构设计 数值模拟
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Application of a Self-developed Proton Transfer Reaction-Mass Spectrometer to On-line Monitoring Trace Volatile Organic Compounds in Ambient Air 被引量:2
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作者 KANG Meng ZOU Xue +4 位作者 LU Yan WANG Hongmei SHEN Chengyin jiang haihe CHU Yannan 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2016年第4期565-569,共5页
Real-time and on-line monitoring volatile organic compounds(VOCs) are valuable for real-time evalua- ting air quality and monitoring the key source of pollution. A self-developed proton transfer reaction-mass spectr... Real-time and on-line monitoring volatile organic compounds(VOCs) are valuable for real-time evalua- ting air quality and monitoring the key source of pollution. A self-developed proton transfer reaction-mass spectro- meter(PTR-MS) was constructed and applied to on-line monitoring trace VOCs in ambient air in Hefei, China. With the help of a self-developed catalytic converter, the background signal of the instrument was detected and the stability of the instrument was evaluated. The relative standard deviation of signal at m/z 21 was only 0.74% and the detection limit of PTR-MS was 97 part per trillion(97x 10-12, volume ratio). As a case of the air monitoring in Hefei, the am- bient air at Dongpu reservoir spot was on-line monitored for 13 d with our self-developed PTR-MS. Meanwhile, a solid-phase micro-extraction(SPME) technique coupled to gas chromatography-mass spectrometry/mass spectrometry (GC-MS/MS) was also used for the off-line detection of the air. The results show that our self-developed PTR-MS can be used for the on-line and long-term monitoring of VOCs in air at part per trillion level, and the change trend of VOCs concentration monitored with PTR-MS was consistent with that detected with the conventional SPME-GC-MS. This self-developed PTR-MS can fully satisfy the requirements of air quality monitoring and real-time monitoring of the key pollution sources. 展开更多
关键词 Proton transfer reaction-mass spectrometry Volatile organic compound(VOC) On-line monitoring
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