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薄层水泥净浆早期水化过程分层电学测量 被引量:1
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作者 汪博浩 王卫 +2 位作者 金峰 谭捍东 黄杜若 《水力发电学报》 EI CSCD 北大核心 2020年第8期28-35,共8页
自流控制灌浆形成的胶结颗粒料内部环境条件不同于普通混凝土。为研究环境条件对其水化反应进程的影响,本文采用埋入式电极阵列等设备,对薄层水泥净浆的早期水化过程进行较为精细的分层电学测量,并使用热重分析手段对电学测量结果进行... 自流控制灌浆形成的胶结颗粒料内部环境条件不同于普通混凝土。为研究环境条件对其水化反应进程的影响,本文采用埋入式电极阵列等设备,对薄层水泥净浆的早期水化过程进行较为精细的分层电学测量,并使用热重分析手段对电学测量结果进行印证。结果表明,在水化反应初始水解期和休眠期,试样水化进程在垂直方向上基本均匀,且不同厚度试样水化进程基本一致;水化反应加速期以后,接近表面处的孔隙饱和度小于内部较深处的孔隙饱和度,导致一定龄期后接近表面处的水化程度小于内部较深处的水化程度、较薄试样接近表面处的水化程度小于较厚试样同样深度处的水化程度。这些结论可为胶结颗粒料施工的质量控制提供参考。 展开更多
关键词 水泥净浆 埋入式电极阵列 水化过程测量 孔隙饱和度 热重分析
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Experimental Study on the Inlet Fogging System Using Two-Fluid Nozzles
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作者 Abhilash Suryan Dong Sun Kim Heuy Dong Kim 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第2期132-135,共4页
Large-capacity compressors in industrial plants and the compressors in gas turbine engines consume a considerable amount of power. The compression work is a strong fimction of the ambient air temperature. This increas... Large-capacity compressors in industrial plants and the compressors in gas turbine engines consume a considerable amount of power. The compression work is a strong fimction of the ambient air temperature. This increase in compression work presents a significant problem to utilities, generators and power producers when electric demands are high during the hot months. In many petrochemical process industries and gas turbine engines, the in- crease in compression work curtails plant output, demanding more electric power to drive the system. One way to counter this problem is to directly cool the inlet air. Inlet fogging is a popular means of cooling the inlet air to air compressors. In the present study, experiments have been performed to investigate the suitability of two-fluid nozzle for inlet fogging. Compressed air is used as the driving working gas for two-fluid nozzle and water at am- bient conditions is dragged into the high-speed air jet, thus enabling the entrained water to be atomized in a very short distance from the exit of the two-fluid nozzle. The air supply pressure is varied between 2.0 and 5.0 bar and the water flow rate entrained is measured. The flow visualization and temperature and relative humidity measurements are carried out to specify the fogging characteristics of the two-fluid nozzle. 展开更多
关键词 Evaporative Cooling Inlet Fogging Energy Savings Two-fluid Nozzles
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