期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
瞬变条件下土壤—植物系统中的水容效应及其应用研究 被引量:5
1
作者 黄明斌 张富仓 康绍忠 《干旱地区农业研究》 CSCD 北大核心 1999年第1期45-49,共5页
水容是继水流阻力之后反映土壤—植物系统中水分动力学性质的又一重要水力学参数。通过生长箱内的模拟实验进一步揭示了土壤—植物系统的水容特性,分析了系统中的水容在植物抗御高温低湿型热害中的作用,探讨了用水容作为指标来评价生... 水容是继水流阻力之后反映土壤—植物系统中水分动力学性质的又一重要水力学参数。通过生长箱内的模拟实验进一步揭示了土壤—植物系统的水容特性,分析了系统中的水容在植物抗御高温低湿型热害中的作用,探讨了用水容作为指标来评价生长在不同水分条件下的冬小麦对大气干旱的适应能力,为水容的实际应用提供了新的启示。 展开更多
关键词 土壤-植物系统 条件 水容 模拟实验 冬小麦
下载PDF
Computational analysis for prediction of pressure of PWR presurizer under transient conditions
2
作者 MAHMOODArshad XUJi-Jun 《Nuclear Science and Techniques》 SCIE CAS CSCD 2001年第1期53-60,共8页
A computer model has been developed for prediction of the pressure in the pressurizer under transient conditions. In the model three separate thermodynamic regions which are not required to be in thermal equilibrium h... A computer model has been developed for prediction of the pressure in the pressurizer under transient conditions. In the model three separate thermodynamic regions which are not required to be in thermal equilibrium have been considered. The mathematical model derived from the general conservation equations includes all of the important thermal-hydraulics phenomena occurring in the pressurizer, i.e., stratification of the hot water and incoming cold water, bulk flashing and condensation, wall condensation, and interfacial heat and mass transfer, etc. The bubble rising and rain-out models are developed to describe bulk flashing and condensation, respectively. To obtain the wall condensation rate, a one-dimensional heat conduction equation is solved by the pivoting method. The presented model will predict the pressure-time behavior of a PWR pressurizer during a variety of transients. The results obtained from the proposed mathematical model are in good agreement with available data on the CHASHMA nuclear power plant’8 pressurizer performance. 展开更多
关键词 高压水反应堆 条件 实际压强分析
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部