1.
Estimation of groundwater renewal rate by tritium in the piedmont plain of the Taihang Mountains
利用氚估算太行山前地下水更新速率
2.
Corrosion Rate Updating of Hydraulic Steel Gates Based on Bayesian Prior Methods
基于Bayes先验方法的水工钢闸门腐蚀速率更新
3.
Study of Renewal and the Recharge Question of Geothermal Waters in the Guanzhong Basin
关中盆地地下热水的可更新性与回灌问题研究
4.
A CABAC Accelerating Algorithm Base on Probability Estimation Update
基于概率估计更新的CABAC加速算法
5.
Isotope Age of Groundwater in Lubei Plain and an Evaluation of Its Renewable Capacity
鲁北平原地下水同位素年龄及可更新能力评价
6.
Groundwater Renewal and Characteristics in the Deep Confined Aquifer in North China Plain
华北平原深层地下水的更新与资源属性
7.
A New Method to Evaluating Sedimentary Rate on the Yangtze River Subaqueous Delta:Seasonal Sedimentary Record of Bio-Si
长江水下三角洲现代沉积速率厘定的新途径:季节性Bio-Si记录
8.
Innovation of Property Right, Technical Efficiency and Groundwater Irrigation Management;
地下水灌溉系统产权制度创新、效率及政策
9.
Chemical Characteristics of Groundwater and Discriminate Models of Water Bursting Source in Xinzhuangzi Coalfield of Huainan Mining Area
新庄孜井田地下水化学特征及突水水源快速判别模型
10.
The Study of Groundwater Renewability in the Northern Area of Ordos Cretaceous Basin;
鄂尔多斯白垩系盆地北区地下水可更新能力研究
11.
Rate Control Based Fast Intra-Update Algorithm;
基于比特率控制过程的快速帧内更新算法
12.
Well injection rates in a particular area would initially be generally similar to pumping, offtake, rates.
对一个具体地段来说,井的注水速率开始时应当接近抽水速率。
13.
Now you can try to test the download speed. After reboot your system.
重新开机后试试上网测试下载速率吧.
14.
A new method based on the frequency decrease rate for fast identification of site liquefaction from surface acceleration records was presented.
提出了一个以频率下降率为基本指标的依据强震记录快速识别场地液化的新方法。
15.
Groundwater recharges in aquifers.
地下水重新注入含水层。
16.
Impacts of Hathpace Soil Preparation and Caudex Cutting on Growth of Manchurian Ash Seedlings Planting under Its Natural Forest;
高台整地和苗木截顶对水曲柳天然林下人工更新苗的影响
17.
Estimation of Groundwater Recharge and Renewal Rate Based on Environmental Isopes in Songnen Plain;
基于同位素技术的松嫩平原地下水补给及更新性研究
18.
Loss rate of soil water and leaf water is controlled under drought.
在干旱胁迫下,可有效地抑制土壤水分的损失速率,使烟叶的水分损失得到控制.