• 研究了煤岩储层的应力敏感、水敏和速敏。

    The stress, water and velocity sensitivity of coal gas reservoir were studied.

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  • 由压力突增而形成的速敏、压敏是第三位的潜在伤害因素。

    Velocity and pressure sensitivities caused by pressure jump are the third potential damage factors.

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  • 本文从蓬莱镇组浅层气藏的储层特征入手,找出产生速敏效应的潜在因素;

    The potential factors of causing damages to reservoirs due to the inappropnriate flowing velocity are analysized in this article.

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  • 该区块储层敏感性总的特点为:水敏性中等到较强,速敏性中等,酸敏性中等到较强。

    The overall characteristics of the reservoir sensitivity include: water sensitivity is from medium to strong , speed sensitivity is medium, acidic sensitivity is from medium to strong .

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  • 该区块储层敏感性总的特点为:水敏性中等到较强,速敏性中等,酸敏性中等到较强。

    The result is that water and acid sensitivity of this block are not so strong.

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  • 讨论了阿南油田注入水的水敏性和速敏性损害以及由于注入水水质不合格带来的储层损害。

    This paper investigated the water sensitive and velocity sensitive damage in Anan oilfield, and formation damage caused by poor water quality injected.

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  • 定量评价了吉林油田的储层速敏性、水敏性、盐敏性和碱敏性,找出了潜在的储层伤害因素。

    The rate sensitivity, water sensitivity, salt sensitivity and alkali sensitivity of Jilin oil field formation are quantitatively evaluated and the potential causes to formation damage are found out.

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  • 实验用氮气以不同的驱替速度和驱替压差驱替岩心,得到由速敏性引起的渗透率损害及相关分析结果。

    Nitrogen gas with different displacing velocity and pressure was used to displace the core in testing, the permeability damage and correlation analysis caused by velocity sensitivity were obtained.

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  • 气体钻井由于其机械钻速快,能有效防止水敏性泥页岩坍塌,杜绝井漏。

    The gas drilling technology is increasingly applied these days due to its high ROP, effective prevention of the cave-in of water-sensitive shales and the capability to eliminate lost circulations.

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  • 发现随着电解质体系粘度的增加,I_3~-离子扩散系数急剧下降,进而在准固念染料敏化太阳能电池的光电转换过程中形成新的速控步骤I_3~-离子的扩散过程。

    With the increasing of the viscosity of electrolyte, the diffusion coefficient of I_3 ion decreased rapidly to be a new controlling step in the quasi-solid state dye-sensitized solar cell.

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  • 发现随着电解质体系粘度的增加,I_3~-离子扩散系数急剧下降,进而在准固念染料敏化太阳能电池的光电转换过程中形成新的速控步骤I_3~-离子的扩散过程。

    With the increasing of the viscosity of electrolyte, the diffusion coefficient of I_3 ion decreased rapidly to be a new controlling step in the quasi-solid state dye-sensitized solar cell.

    youdao

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