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1)  volumetric sweep efficiency
体积波及系数
1.
A method to predict volumetric sweep efficiency and recoverable reserves of water-drive oilfields;
预测水驱油田体积波及系数和可采储量的方法
2.
In addition,using the relationship among recovery percent,displacement and volumetric sweep efficiency,the equations for estimation of the volumetric sweep efficiency and.
利用采出程度、驱油效率和体积波及系数三者关系,给出了体积波及系数与可采储量采出程度的计算公式。
2)  ultimate volumetric sweep factor
最终体积波及系数
1.
By an expended derivation of Type C water drive curve, it can be used to predict not only recoverable reserves, movable oil in place, water_cut and ultimate volumetric sweep factor, but also recovery efficiency, displacement efficiency and residual oil saturation in water drive oilfields.
对丙型水驱曲线进行了扩展推导 ,使其不仅可以预测水驱油田的可采储量、可动油储量、含水率和最终体积波及系数 ,而且可以预测水驱油田的采收率、驱油效率和残余油饱和度。
3)  sweep efficiency of waterflooding volume
水驱体积波及系数
4)  secondary volumetric sweep efficiency
二次采油体积波及系数
5)  areal sweep efficiency
面积波及系数
6)  swept volume
波及体积
1.
In order to improve macro swept volume and micro displacement efficiency, a new EOR method, i.
针对聚合物驱后油层孔隙结构的变化和剩余油的分布特点,从提高油层的宏观波及体积和微观洗油效率入手,提出了一种新的提高原油采收率的方法,即AS体系与泡沫交替注入提高采收率技术。
2.
At the late period of water injection in multi layer heterogeneous river-delta depositional system of Daqing oilfield, liquids production of partial blocks and certain well fields is high, water cut is high, producing performance is not balanced, and swept volume of conventional water injection can not be improved.
针对大庆油田河流—三角洲沉积体系的多油层、非均质注水开采的高含水后期所暴露出部分区块和个别井区的产液量高、含水高、动用状况不均衡、常规注水难以再扩大波及体积等问题,应用数值模拟研究了具体开发区块周期注水的合理时机和周期。
3.
Based on fine de-scription of residual oil distribution,well pattern adjust-ment and pulse water injection were performed in Block7in Gudong oilfield to enlarge swept volume,to tap residual oil potential in low permeability zone,to reduce the area of region of bypassed oil and to improve utiliza-tion fact.
在孤东油田七区西63+4单元剩余油分布精细描述的基础上,通过井网调整及脉冲注水,在扩大注水波及体积、挖掘低渗区剩余油潜力、减少死油区、提高注水利用率方面进行了系统阐述,并先后进行了现场实施,取得了明显的增油效果。
补充资料:分体积膜系数
分子式:
CAS号:

性质:两相直接接触进行传质或传热时,分体积膜系数可用来求算设备所需体积或高度的系数。具体的有分体积传质系数或分体积传热系数;前者指的是假设单位设备体积、单位时间的传质量与有效层流膜内的推动力(浓度差)成正比时的比例系数;后者是指假设单位设备体积、单位时间的传热量与有效层流膜内的温度差成正比时的比例系数。换言之,传质分系数(或传热分系数)与比表面积(单位设备体积的有效接触面积)的乘积等于分体积膜系数。

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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