扩大了井下热电模块系统的应用范围,提高了蒸汽重力影响法的效率

K. Zaurbekov, A. Syzdykov, S. Zaurbekov
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引用次数: 0

摘要

本文论述了哈萨克斯坦油田采用热法影响高粘度油藏时,现有的油管(油管)保温技术。在使用蒸汽循环处理(CSS)、蒸汽重力处理(SAGD)和原地燃烧的过程中,一个迫切的问题是随着井深的增加而出现严重的热损失,这限制了这些提高采收率方法的使用。具有高粘度流体的生产地层存在深度大,导致在给定蒸汽温度下将冷却剂输送到生产地层的问题,因为使用热方法的有效性的主要指标是冷却剂的温度。与此相关的是,在将冷却剂通过管柱输送到生产油藏的过程中,如何减少热损失是一个重要的技术问题,以最小的材料资源成本解决这个问题将增加矿业公司应用这些方法的兴趣,即SAGD技术。通过对比分析,为哈萨克斯坦油田推荐了一种提高SAGD方法效率的技术。目前,在高粘度油田,SAGD法对管柱进行保温主要有两种技术:真空绝热油管(vacuum insulation油管- vit);-隔热管。本文提出了一种将井眼热电模块置于管柱内,将电转化为热的新方法。所提出的井下热电模块系统可以在整个井筒长度上保持冷却剂温度,从而可以将SAGD方法应用于1500米或更深的深度。井下热电模块系统设计简单,技术先进,运行可靠,易于复制。将井下热电模块系统置于管柱中,可以使用SAGD方法增加井深,并且与真空绝缘油管(VIT)和隔热油管系统相比,其成本显著降低。韩国制造的SAMREG 40- 2cr型的现代热电缆提供高达40 W / m的功率,足以维持所需的冷却剂温度。该电缆的特点是自调节、加热、加热、屏蔽电缆(编织),工作在220- 240v的市电电压下,频率为50hz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DOWNHOLE THERMOELECTRIC MODULE SYSTEM TO EXPAND THE APPLICATION AND INCREASE THE EFFICIENCY OF THE STEAM GRAVITATION INFLUENCE METHOD
The article discusses the existing technologies for thermal insulation of tubing (tubing) when using thermal methods of influencing an oil reservoir with high-viscosity oil, inherent in the fields of Kazakhstan. An urgent problem in the use of steam cycle treatment (CSS), steam gravity treatment (SAGD) and in situ combustion is significant heat loss with increasing well depth, which imposes restrictions on the use of these enhanced oil recovery methods. The large depth of occurrence of productive formations with high viscosity of fluids causes this problem of delivering the coolant to the productive formation with a given steam temperature, since the main indicator of the effectiveness of the use of thermal methods is the temperature of the coolant, in connection with which the solution of the issue of reducing heat losses in the process of delivering the coolant through the tubing string to a productive reservoir is an important technical problem, the solution of which with minimal costs of material resources will increase the interest of mining companies in the application of these methods, namely the SAGD technology. The paper carried out a comparative analysis and recommended a technology that improves the efficiency of the SAGD method for the fields of Kazakhstan. Currently, there are two main technologies for thermal insulation of the tubing string using the SAGD method, in high-viscosity oil fields - vacuum insulated tubing (Vacuum Insulated Tubing-VIT); - heat-insulated tubing. This article proposes a new method based on the conversion of electricity into heat by placing a borehole thermoelectric module in the tubing string. The proposed downhole thermoelectric module system makes it possible to maintain the coolant temperature along the entire length of the wellbore, which makes it possible to apply the SAGD method to depths of 1500 meters or more. The design of the downhole thermoelectric module system is simple, technologically advanced, reliable in operation and easily replicable. The downhole thermoelectric module system, placed in the tubing string, provides the possibility of increasing the depth of wells using the SAGD method and is characterized by a significantly lower cost compared to vacuum insulated tubing (VIT) and heatinsulated tubing systems. Modern heat cables of the SAMREG 40-2CR type, manufactured in South Korea, provide power up to 40 W / m, which is quite enough to maintain the desired temperature of the coolant. The cable is characterized as a self-regulating, heating, heating, shielded cable (braided), operates from a mains voltage of 220-240 V, with a frequency of 50 Hz.
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