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1)  formate-mud
甲酸盐泥浆
1.
Because formate-mud can stabilize the borehole wall , the oil and gas beds will be protected, but better resistivity logging curves will not be obtained, so it is difficult to identify oil and water and determine oil saturation .
甲酸盐泥浆可以稳定井壁 ,保护油气层。
2)  phosphate sludge
磷酸盐泥浆
1.
According to special construction requirements on phosphate sludge in blast furnace,the experimental preparation of phosphate sludge was reviewed.
针对高炉用磷酸盐泥浆的特殊施工要求,叙述了磷酸盐泥浆的试验研制过程。
3)  potassium-salt mud
钾酸盐泥浆
4)  Portland cement paste
硅酸盐水泥浆体
1.
The theories of mechanics of composite materials and poromechanics were used to develop a micromechanics model capable of simulating the effective elastic properties of Portland cement pastes.
应用复合材料力学理论和有孔介质力学(Poromechanics)理论建立了一个描述硬化硅酸盐水泥浆体弹性模量的细观力学模型,将硬化水泥浆体从不同尺度上划分为4个层次,即C-S-H凝胶、水泥水化产物、水泥浆体骨架和水泥浆体,分别应用不同的细观力学模型予以描述:将C-S-H视为饱和的有孔介质;应用Mori-Tanaka模型描述水泥水化产物的弹性性质;应用三相模型(Three-phase model)模拟水泥浆体骨架的有效弹性模量;最后,再次应用Mori-Tanaka模型和有孔介质理论,计算水泥浆体的排水和不排水弹性模量(Drained and undrainedelastic moduli)。
5)  saline mud
盐水泥浆
1.
Analytical correction method and its application in saline mud-log in Liaohe tidal zone and shallow water area;
辽河滩海地区盐水泥浆测井资料分析校正方法及应用
2.
Because it is difficult to identify the reservoir fluid accurately under saline mud condition in Kuihuadao oilfield, we have carried out a research on the method of identifying reservoir fluids in the oilfield using plenty of production test or production data and 3700 logging data to improve the coincidence rate.
针对葵花岛油田在盐水泥浆条件下准确识别储层流体存在一定的难度,为了不断提高该油田储层流体识别的符合率,本文充分利用该油田比较丰富的试油投产资料及3700测井资料,开展了该油田储层流体识别方法研究,建立了该油田油气水层及气层识别图版,同时应用模糊逻辑方法建立了葵花岛油田模糊逻辑储层流体识别模型,并应用该模型对该油田内各井进行储层流体识别,最后结合上述图版及模糊逻辑储层流体识别成果,综合划分了该油田各井的有效厚度,重新计算了原油天然气地质储量,圆满完成了葵花岛油田的储量套改工作。
6)  salty mud
盐水泥浆
1.
Methods of Formation Resistivity Correction for Salty Mud Invasion;
盐水泥浆侵入地层电阻率的校正方法研究
2.
Based on the high temperature and high pressure lab measurements,the numerical simulations and the general analysis ofthe well logs of the different kinds of drilling muds,this article considers the very deep invasion of the conductive salty mud to bethe main reason of the low resistive hydrocarbon-bearing formations in Hainan Zone,Liaohe.
通过实验室高温高压岩电实验、数值模拟及不同泥浆类型测井资料的综合分析,认为盐水泥浆滤液侵人较深是造成辽河油田海南构造带油气层电阻率低的主要原因。
补充资料:咸水泥浆、海水钻井液、海水泥浆
分子式:
CAS号:

性质:又称咸水泥浆、海水钻井液、海水泥浆。氯离子含量在6000mg/L以下的水基钻井液。

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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