期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
钢铁工业蒸气介质能量流网络的动态分析研究 被引量:3
1
作者 刘精宇 蔡九菊 杨靖辉 《中国冶金》 CAS 2013年第4期47-50,共4页
蒸气网络系统是钢铁企业主生产工序的重要辅助系统,蒸气放散随时间的波动变化直接关系到对蒸气网络的调度,针对蒸气网络系统的供需波动较大,提出了阶段分析法,应用该方法建立了钢铁企业的蒸气网络系统供需数学分析模型,分3个阶段并应用... 蒸气网络系统是钢铁企业主生产工序的重要辅助系统,蒸气放散随时间的波动变化直接关系到对蒸气网络的调度,针对蒸气网络系统的供需波动较大,提出了阶段分析法,应用该方法建立了钢铁企业的蒸气网络系统供需数学分析模型,分3个阶段并应用质量守恒定律对蒸气网络系统的供需过程进行动态分析。结果表明,与其他方法相比,该方法科学合理地揭示出了影响蒸气网络系统供需波动变化的因素,对这些因素进行控制能有效地减少蒸气放散,节约能源。 展开更多
关键词 蒸气网络系统 阶段分析法 质量守恒定律 节约能源
原文传递
Experiment on Driving Precipitable Water Vapor from Ground-Based GPS Network in Chengdu Plain
2
作者 LI Guoping HUANG Dingfa +1 位作者 LIU Biquan CHEN Jiaona 《Geo-Spatial Information Science》 2007年第3期181-185,共5页
The estimates of total zenith delay are derived using Bernese GPS Software V4. 2 based on GPS data every 30 s from the first measurement experiment of a ground-based GPS network in Chengdu Plain of Southwest China dur... The estimates of total zenith delay are derived using Bernese GPS Software V4. 2 based on GPS data every 30 s from the first measurement experiment of a ground-based GPS network in Chengdu Plain of Southwest China during the period from July to September 2004. Then the estimates of 0.5 hourly precipitable water vapor (PWV) derived from global positioning system (GPS) are obtained using meteorological data from automatic weather stations (AWS). The comparison of PWV derived from GPS and those from radiosonde observations is given for the Chengdu station, with RMS (root mean square) differences of 3.09m. The consistency of precipitable water vapor derived from GPS to those from radiosonde is good. It is concluded that Bevis' empirical formula for estimating the weighted atmospheric mean temperature can be applicable in Chengdu area because the relationship of GPS PWV with Bevis' formula and GPS PWV with radiosonde method shows a high correlation. The result of this GPS measurement experiment is helpful both for accumulating the study of precipitable water vapor derived from GPS in Chengdu areas located at the eastern side of the Tibetan Plateau and for studying spatial-temporal variations of regional atmospheric water vapor through many disciplines cooperatively. 展开更多
关键词 precipitable water vapor global positioning system remote sensing
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部