A Numerical Simulation Approach for Superheated Steam Flow during Multipoint Steam Injection in Horizontal Well

Численное моделирование потока перегретого пара при многоточечном впрыске пара в горизонтальную скважину
Mingzhong Li, Chenwei Liu, Qiuying Du, Zhifeng Bai, Zhou Chenru, Xiangyu Wang
2024-01-19

horizontal wellboremultipoint steam injectionsteam-liquid two-phase flowsuperheated steam flowthrottling pressure difference
Superheated steam flow during multipoint steam injection technology has a good effect on improving the steam absorption profile of heavy oil thermal recovery wells, enhancing the production degree of horizontal section of thermal recovery wells, and enhancing oil recovery. Based on the structure of multipoint steam injection horizontal string, considering the characteristics of variable mass flow, pressure drop of steam-liquid two-phase flow, and throttling pressure difference of steam injection valve in the process of steam injection, this paper establishes the calculation model of various parameters of multipoint steam injection horizontal wellbore and calculates the distribution of steam injection rate, temperature, pressure gradient, and dryness along the section of multipoint steam injection in horizontal wellbore. The results show that the temperature and pressure decrease gradually from heel to toe, and the steam dryness decreases gradually. Considering the influence of throttle pressure difference of steam injection valve and pressure drop of gas-liquid two-phase flow in the wellbore, the traditional calculation model of steam injection thermodynamic parameters is optimized, and the optimization of wellbore structure and steam injection parameters is an effective method to achieve uniform steam injection in horizontal wells. The steam injection uniformity of horizontal wells can be effectively improved by adjusting the steam injection valve spacing and steam injection parameters. When the steam injection volume is 200 m3/d and the steam injection valve spacing is 20 m, a more stable steam injection effect can be obtained. The findings of this study can help for better understanding of improving the uniformity of steam injection and enhancing the recovery factor.
1
Computed distributions along the horizontal section showing temperature and pressure decrease gradually from heel to toe, with steam dryness decreasing correspondingly.
2
Established a calculation model for multipoint steam injection horizontal wellbore that accounts for variable mass flow, steam-liquid two-phase pressure drop, and throttling pressure difference of injection valves.
3
Found that optimizing wellbore structure and steam injection parameters (valve spacing and injection rates) is effective to achieve more uniform steam injection.
4
Identified that at 200 m3/d steam injection volume and 20 m valve spacing, a more stable and uniform steam injection effect is obtained.
5
Optimized traditional thermodynamic calculation by including valve throttle pressure difference and gas-liquid two-phase wellbore pressure drop, improving prediction accuracy for injection parameters.

Multipoint steam injection horizontal wellbore (superheated steam flow in a multipoint steam injection horizontal string)

Distribution and dynamics of superheated steam flow parameters along the horizontal wellbore—including steam injection rate, temperature, pressure gradient, steam dryness—accounting for variable mass flow, steam-liquid two-phase pressure drop, and valve throttling pressure difference to improve steam injection uniformity

Publication Details
Publication Date
2024-01-19
Journal
Publisher
ISSN
Cited by
0
Access Type
Author Information
Authors
Mingzhong Li
Chenwei Liu
Qiuying Du
Zhifeng Bai
Zhou Chenru
Xiangyu Wang
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%