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1)  gas slippage effect
气体滑脱效应
1.
When the nitrogen injection pressure increases,the apparent relative permeability of nitrogen in core increases sharply at first,and slowly later,which may be attributed to the gas slippage effect weakened by compression.
随着压力的增加,岩心气体视渗透率先快速增加,然后趋于平缓,这是压缩引起的气体滑脱效应减弱所致;而完全饱和水的岩心随着残余水饱和度的降低,气体视渗透率先缓慢增加,当含水饱和度降到一临界值时,视渗透率迅速增大,这是空间增大引起气体的滑脱效应增加所致。
2)  slippage effect
滑脱效应
1.
Productivity analysis for fractured well in low-permeability gas reservoirs considering slippage effect
考虑滑脱效应的低渗透气藏压裂井产能分析
2.
A new deliverability equation considering slippage effect for gas reservoirs with low permeability and low pressure
考虑滑脱效应的低渗低压气藏的气井产能方程
3.
The main factors affecting percolation in low permeability reservoirs include stress,threshold pressure gradient,slippage effect and water-blocking effect,which play various roles on percolation,but all will result in non-linear percolation in the end.
影响低渗气藏渗流特征的主要因素有应力作用、启动压力梯度、滑脱效应和水锁效应等因素,并且这些因素对渗流影响各有不同,但最终均引起低渗气藏渗流的非线性化。
3)  gas slippage effect
滑脱效应
1.
Research on the critical indexs of considering gas slippage effect
低渗气藏中考虑滑脱效应的界限探讨
2.
Results show that gas slippage effect has a large impact on gas non-linear seepage flow, and with the increa.
考虑气体滑脱效应条件下,建立了煤层气在低渗透储层中渗流的数学模型,采用Laplace变换和留数计算方法进行解析求解,得出了气体非线性渗流的压力分布规律,并将其与达西渗流条件计算的结果进行对比分析,结果表明:滑脱效应对气体非线性渗流过程有较大影响,且随着抽气量的增大,其差别越明显。
4)  slippage effects
滑脱效应
1.
Experimental study of gas transfusion with slippage effects in hypotonic coal reservoir
滑脱效应影响的低渗煤层气运移实验研究
2.
Considering the percolation in this pre-pressing porous media,the slippage effects are remarkable.
煤层的渗透率低,对于致密的多孔介质渗流,滑脱效应将十分显著。
3.
Considering the percolation in this pre-pressing porous media,the slippage effects are remarkable,which will increase coal reservoir penetration function.
在千米深度下赋存煤层气的煤层是致密的多孔介质,煤层的渗透率低,对于致密的多孔介质渗流,滑脱效应十分显著,而滑脱效应又可以增加煤储层的渗透性能。
5)  slip effect
滑脱效应
1.
Numerical simulation of coal-bed methane seepage with the consideration of slip effect and temperature field;
考虑滑脱效应和温度场的煤层气渗流数值模拟
2.
Under this condition, a lot of new influence factors appear, the superficial model of coalbed methane is no longer suitable, so we set up the coalbed methane seepage model considered slip effect and porosity pressure, set up the coalbed methane seepage model considered coupling of s.
而进入深部开采后出现了许多新的影响因素使得原有的浅部煤层气渗流模型不再适用,因此本文建立了考虑滑脱效应及孔隙压力的煤层气渗流模型,建立了考虑滑脱效应及温度场耦合的煤层气渗流的数学模型,建立了考虑滑脱效应的水气耦合煤层气渗流数学模型。
3.
The paper studies stress sensitivity and slip effect of CBM reservoir by using low speed permeation experimental unit, and compares the differences of the test results between cores taken from CBM reservoir and sandstone samples.
本文利用低速渗流实验装置,研究了煤层气藏的应力敏感性和滑脱效应,比较了煤层气藏岩心和砂岩试样结果的差异。
6)  gas slippage
气体滑脱
补充资料:温室效应和温室气体
分子式:
分子量:
CAS号:

性质:一些微量气体对太阳的短波辐射无阻碍,但对长波辐射有强烈的吸收,若其吸收带落在7~13微米的红外大气窗口内,则吸收的能量将引起大气的增温。温室气体主要有CO2、H2O、CH4、N2O、O3、CFCs等约30余种。当地表因被辐射加热又以红外辐射的形式向空间散发的能量被大气中的温室 气体吸收而使大气增温,产生温室效应。大气中本来就有CO2、H2O等温室气体,但如果温室气体的种类及其含量因人为活动在大气中增加时,温室效应将增加,从而导致地球的平均气温上升,这将造成全球性的危害。

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