形状记忆防砂筛的试验研究

Shuang Ai, Youzhi Duan, Yashu Chen, Chen Gao, R. Rached
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摘要

基于形状记忆聚合物的形状记忆防砂筛管完井不仅具有像独立筛管一样工艺简单、易下入井的优点,而且可以达到砾石充填的防砂效果。因此,形状记忆防砂筛具有广阔的应用前景。然而,由于形状记忆材料对温度敏感,因此需要大量的实验室实验来评估其膨胀、渗流和挡砂能力,并优化聚合物体系和筛管结构。研制了全尺寸形状记忆屏样机性能评价实验系统。该装置可以实时、定量地描述形状记忆屏在膨胀过程中及膨胀后的渗透率、外径、残余应力等参数。通过对通过流体进行步进加热来控制筛管原型的膨胀行为,模拟筛管在井中运行的过程。利用该装置进行了60组实验。对形状记忆筛网的膨胀性能、渗流性能和防砂性能进行了评价。对形状记忆聚合物的配方和屏蔽结构进行了优化。研究表明,优化后的形状记忆防砂筛管密集填充环空,膨胀后能有效支撑井筒。膨胀筛渗透率可达35µm2,驱替压差可小于1kPa,防砂精度可达0.061mm。因此,形状记忆防砂筛管可用于长水平井、复杂井、海上井等井场条件有限的油气井防砂完井。提出了一种形状记忆屏性能评价实验装置,实时定量地描述了形状记忆屏在膨胀过程中和膨胀后的动态膨胀行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of Shape Memory Sand Control Screen
Shape memory sand control screen completion based on shape memory polymer not only has the advantages of simple process and easy to run in hole, like independent screen, but also can achieve the sand management effect of gravel filling. Therefore, shape memory sand control screen has wide application prospects. However, since the shape memory material is temperature-sensitive, a large number of laboratory experiments are needed to evaluate its expansion, seepage and sand retaining capabilities, as well as optimize the polymer system and screen structure. A performance evaluation experiment system for full-size shape memory screen prototype was developed. The device can describe the parameters of the shape memory screen during the expansion process and after expansion in real time and quantitatively, such as permeability, outer diameter and residual stress. The expansion behavior of screen prototype is controlled by step heating the passing through fluid to simulate the screen run in hole operation. 60 sets of experiments were carried out using the device. The expansion performance, seepage performance and sand control performance of shape memory screens were evaluated. Shape memory polymer formulation and screen structure are also optimized. The research shows that the optimized shape memory sand control screen densely filled annulus and effectively supports the wellbore after expansion. The permeability of the expanded screen can be up to 35µm2, the displacement pressure difference can be less than 1kPa, and the sand control precision can be up to 0.061mm. Therefore, shape memory sand control screen can be used for sand control completion of oil and gas wells with limited well site conditions such as long horizontal wells, complex wells and offshore wells. This paper presents an experiment device to evaluate the performance of shape memory screen, the dynamic expansion behavior is described during the expansion process and after expansion in real time and quantitatively.
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