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1)  product resistivity
产水电阻率
2)  rainwater resistivity
雨水电阻率
3)  electrical resistivity
水化电阻率
1.
The results show that when 30% cement are replaced by CFBA,in the earlier hydration period,the electrical resistivity increase,and it is directly proportional to the fineness of CFBA;CFBA retard the setting time of cement,but grinded CFBA curtail it;CFBA increase the hydration heat of early age pastes of cement,and grinded CFBA are higher than original ones.
为了探讨固硫灰作水泥掺和料的水化行为,本文研究了不同细度固硫灰替代部分水泥时胶凝体系1d水化电阻率和水化放热的变化,分析了不同细度固硫灰对水泥早期水化行为的影响。
2.
The results show that when 30%cement are replaced by CFBA,in the earlier hydration period,the electrical resistivity increase,and it is directly proportional to the fineness of CFBA;CFBA retard the setting time of cement,but grinded CFBA curtail it;CFBA increase the hydration heat of early age pastes of cement,and grinded CFBA are higher than original ones.
为了探讨固硫灰作水泥掺和料的水化行为,研究了不同细度固硫灰替代部分水泥时胶凝体系1 d水化电阻率和水化放热的变化,分析了不同细度固硫灰对水泥早期水化行为的影响。
4)  low resistivity pay zone
低电阻率产层
5)  formation water resistivity
地层水电阻率
1.
In waterflood-production oilfields, formation water resistivity of water-flooded zone is not only the basic parameter for water-flooded zone evaluation but also the "bottle neck" which restrict water-flooded zone evaluation.
注水开发油田水淹层地层水电阻率不仅是水淹层评价十分重要的基础参数,也是制约水淹层评价的"瓶颈"。
2.
Based on large number of core experiment data, a method for quantitatively deriving formation water salinity (formation water resistivity) and capacity of cation exchange of the theoretical model of spontaneous potential and induced polarization potential is established.
根据大量的岩心实验数据,确定了自然电位和激发极化电位理论模型定量求解地层水矿化度(地层水电阻率)、地层阳离子交换量方法。
6)  high-resistivity water layer
高电阻率水层
1.
Study on logging response mechanism shows that,reservoir with high mud and irreducible water saturation,thin layer and interlayer are main causes for forming low-resistivity oil layer,while being tight and containing calcareous and residue oil are main factors of forming high-resistivity water layer.
测井响应机理研究表明:储层高含泥、高束缚水饱和度和薄层、薄互层是形成低电阻率油层的主要原因;而储层致密、含钙、含残余油是形成高电阻率水层的主要因素;此外,油藏被破坏造成油水呈非均质分布,致使储层产油、产水交替出现。
补充资料:电导率(见电阻率)


电导率(见电阻率)
conductivity

d!日nd日O}已电导率(eonduetivity)见电阻率。
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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