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1)  pressure of the granary
储粮压力
2)  the lateral pressure of grain
粮食侧压力
3)  granary storage
粮仓储粮
1.
The main factor that affects the quality of image in the video remote monitoring system of granary storage is the condensing algorithm adapted in the process of image transmission.
在粮仓储粮远程视频监控系统中,影响图像质量的一个主要因素是在图像传输过程中所采用的压缩算法。
4)  Grain storage
储粮
1.
An Automatic Measuring System of Temperature for Grain Storage Based on Digital Sensor DS1620;
基于数字温度传感器DS1620的储粮温度自动测试系统
2.
Advance of studying on mycotoxins and its controlling technology in grain storage;
储粮中真菌毒素及其防控
3.
High-speed & easy remembering method of common injurious insect in grain storage;
常见储粮昆虫的快速简便记忆法
5)  stored grain
储粮
1.
The results showde that the highest temperature of the surface layer was 5 to 7℃ lower in contrast with the con- trol storehouse,the stored grain could keep low-temperature in long term,which has acquired a very good ef- fect.
粮面压盖储粮技术能有效地降低储粮温度的上升幅度,我库在13号仓采用蛭石进行粮面压盖试验,试验仓的表层粮温和最高温度比对照仓低5~7℃,能使粮堆长期保持低温状态,取得了很好的效果。
2.
Development trend of some fumigants used in stored grain is introduced briefly.
本文扼要介绍了当前主要储粮熏蒸剂的发展动态与前景 ,包括溴甲烷的淘汰问题、磷化氢的现状与前景、熏蒸能力有限的敌敌畏、面临淘汰的氯化苦、对环境友好但应用成本较高的二氧化碳和氮气、研究中的氧硫化碳和甲基磷、重新评价的甲酸乙酸、二硫化碳、环氧乙烷等的情况 ,并对新熏蒸剂研究开发前景进行了简单分析。
3.
It can lower the temperature of the roof in summer,reduce the temperature difference between the roof and grain bulk,and put off the raising speed of grain temperature,then the high temperature medium of stored grain in summer was improved.
针对拱板仓储粮度夏粮温偏高、分层明显和温差较大的特点 ,利用自来水自动循环装置对仓顶屋面进行喷水降温 ,最大限度地减少了盛夏仓顶曝晒后的积热 ,缩小了仓顶与粮堆之间的温差 ,延缓了粮温的上升速度 ,从而有效地改善了储粮在盛夏的高温环境 ,抑制了害虫的生长繁殖和粮食品质的陈化 ,是拱板仓储粮安全度夏的有效方法。
6)  reservoir pressure
储层压力
1.
The characteristics and formation mechanism of coalbed methane reservoir pressure in Henan
河南省煤层气储层压力特征及其形成机制
2.
The influence of reservoir pressure on coal bed gas wells is related to the ratio of dispelled pressure to reservoir pressure.
韩城地区煤储层压力异常是影响参数试验井煤层气产出主要的原因。
3.
The digital log data combined with the data of permeability and reservoir pressure tested in boreholes are conducted regression analysis.
利用数字测井资料采用多种方法与钻井煤层渗透率、储层压力的试井资料进行回归分析 ,建立回归方程 ,进而运用到勘探区 ,解释煤层渗透率及储层压力 ,找出其分布规律 ,为煤层气开发和生产提供可靠的资
补充资料:储层描述(见油气田储层评价)


储层描述(见油气田储层评价)
reseroir evaluation of oil and gas field

  储层描述(reseroir evaluation of 011 and gasfield)见油气田储层评价。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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