1) water ratio
水比
1.
Based on recent technical advances at home and abroad,puts forward proposals and idea of decreasing energy consumption by using low water ratio dehydrogenation catalyst and double column pressure swing rectification technology.
并且根据国内外最新技术进展,提出了使用低水比脱氢催化剂及双塔变压精馏技术降低装置能耗的建议和设想。
2) gas-water ratio
气水比
1.
Finally,the corrected Cullender-Smith model suitable for calculating the wellbore pressure in a gas well with high gas-water ratio may .
从气体稳定流动能量方程出发,运用两相流知识,详细讨论了模型推导中涉及的气—水井流密度、气—水井流质量流量、气—水井流体积流速、气—水井流Moody摩阻系数的计算方法,给出了各参数采用我国法定计量单位的实用公式,最后将各参数计算公式代入气体稳定流动能量方程,得出适用于高气水比气井井筒压力计算的修正Cullender和Smith模型。
2.
The influences of injected gas richness,slug size,injected gas-water ratio and the time converting to gas injection on oil displacement efficiency are analyzed,and steam injection parameters are optimized for immiscible displacement in this block.
开展温西3块非混相驱长岩心室内实验,分析了注入气贫富、注入气段塞尺寸、注入气水比和转注气驱时机对驱油效率的影响,并优选出了该块非混相驱注气参数。
3.
We obtain COD cr (dirt) removal ratio is 91% when the residence time is 8 hours and gas-water ratio is 6∶1 and ammonia nitrogen removal ratio is 97.
我们得到了在停留时间 8h、气水比为 6∶1时 ,CODcr(污物 )去除率达到 91% ;在气水比为 6∶1时 ,停留时间为 4h ,氨氮去除率达到 97。
3) oil-water ratio
油水比
4) Air-water ratio
气水比
1.
The oxygen consumption characteristics of jet aeration-pressurized biological contact oxidation process was studied in this paper, and the relationship between pressure, air-water ratio, dissolved oxygen, oxygen uptake rate, and volume load was analyzed.
研究了射流曝气-压力式接触氧化法的耗氧特性,分析了压力、气水比、溶解氧、耗氧速率、容积负荷等的相互关系。
2.
The influence of air-water ratio,HRT(hydraulic retention time),media-filling rate for biological contact oxidation tank and dosage of flocculating agent,surface loading for flotation tank on pollutants removal was studied.
开展了生物接触氧化/气浮工艺处理微污染源水的中试研究(规模为20 m3/h),考察了生物接触氧化池的气水比、水力停留时间、悬浮生物填料填充率和气浮池混凝剂投加量、表面负荷对污染物去除效果的影响。
5) rehydration rate
复水比
6) water filling ratio
充水比
1.
Aiming at the characteristics of the municipal sewage with low carbon and high phosphorus content,the effect of different water filling ratios and HRT on nitrogen removal was studied.
针对此类污水,研究了不同的充水比和反硝化时间对处理效果的影响。
参考词条
补充资料:水浆比
分子式:
CAS号:
性质:在双基推进剂制造的吸收工序中,水与推进剂浆料的质量比。俗称吸收系数。在喷射吸收中称喷射系数。水浆比对控制吸收药的质量,生产效率,安全都有重要意义。一般在间断搅拌吸收中水浆比为5:1~8:1。
CAS号:
性质:在双基推进剂制造的吸收工序中,水与推进剂浆料的质量比。俗称吸收系数。在喷射吸收中称喷射系数。水浆比对控制吸收药的质量,生产效率,安全都有重要意义。一般在间断搅拌吸收中水浆比为5:1~8:1。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。