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Expansion-contraction cycles for cement optimized as a function of additives

机译:根据添加剂优化的水泥膨胀-收缩循环

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An experimental study was carried out to investigate the addition of specific additives to cement in order to eliminate the micro-fractures and micro-annuli that cause gas migration. The experiments performed monitored the change in the cement slurry pressure during the setting of the cement. During the setting period of the cement, two time cycles of cement expansion and contraction were observed. This is due to the individual contributions of each part of teh cement mixture. To obtain the optimum tightness of the cement, final optimum concentrations of teh additives were obtained experimentally, where the cyclic pressure behavior of the cement was optimized for the best final cement results. By utilizing the correct amount of Anchorage Clay, XC-Polymer, Ironite Scavenger, Ultrafine cement and Synthetic Rubber powder in a class G mixture at a given temperature and confining pressure, an impermeable cement mixture can be obtained. The correct amount of Synthetic Rubber used for cyclic pressure reduction is a function of cement setting temperature and pressure as well as the elastic properties of the rubber. By using laboratory testing at different pressure and temperature with different rubber concentrations and elastic properties, it is estimated that the entire annulus can have an impermeable cement from surface to total depth. The difference in temperature and pressure with depth dictates the concentration and elastic properties of the rubber as the required expansion and contraction changes with depth.
机译:进行了一项实验研究,以研究向水泥中添加特定添加剂以消除引起气体迁移的微裂缝和微环空现象。进行的实验监测了水泥凝固过程中水泥浆压力的变化。在水泥凝结期间,观察到水泥膨胀和收缩的两个时间周期。这是由于水泥混合物各部分的单独贡献。为了获得水泥的最佳密封性,通过实验获得了添加剂的最终最佳浓度,其中针对最佳水泥最终结果优化了水泥的循环压力行为。在给定的温度和围压下,通过在G类混合物中使用正确量的锚固粘土,XC聚合物,铁矿石清除剂,超细水泥和合成橡胶粉,可以获得不渗透的水泥混合物。用于循环减压的合成橡胶的正确用量是水泥凝固温度和压力以及橡胶弹性特性的函数。通过使用在不同压力和温度下具有不同橡胶浓度和弹性特性的实验室测试,可以估计整个环面从表面到总深度都可以具有不可渗透的胶结剂。温度和压力随深度的差异决定了橡胶的浓度和弹性,因为所需的膨胀和收缩随深度而变化。

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