Smart Needle Valve: Intelligent and Cost-Effective Solution to Unlock Gas Production in a Tight Gas Field in China

Author:

Chen Zongpeng1,Bo Jiangwei1,Wang Xiangzeng2,Lin Jin3,Qiao Xiangyang3,Wang Bing1,Ding Yong1,Qi Shiwei4,Zhai Zhongbo4,Wang Lang4,Cai Xingxing1,Fendt Andrew1,Audrey Beryl1,Kartoatmodjo Gayatri1,Zhu Ming1,Liu Yunlong1,Wang Yunlong4,Yang Weigang4

Affiliation:

1. SLB, Beijing, China

2. Yanchang Petroleum Group Limited Cooperation Company, Xi'an, Shaanxi, China

3. Research Institute of Natural Gas, YanChang Petroleum, Group, Limited Cooperation Company, Xi'an, Shaanxi, China

4. Schlumberger Copower Oilfield Services Co., Ltd., Xi'an, Shaanxi, China

Abstract

Abstract Gas field C is an unconventional tight gas reservoir located in central China. As the gas wells mature, production rates start to decline because of the decreasing bottomhole pressure that prompts a liquid loading issue. The production loss is up to 114 MMscf/yr resulting from liquid loading. To mitigate this issue and hence optimize production, an innovative intermittent solution has been created. With the combination and implementation of cutting-edge artificial intelligence (AI) methods and Industrial Internet of Things (IIOT) technics, an automatic full-cycle closed-loop workflow has been achieved to manage the intermittent production dynamically. This solution has tremendous benefits in cost-effectiveness, efficient operations, health, safety, and environment (HSE) exposure reduction, bringing a new wave of digital technology to facilitate optimization in gas field operation. This solution is deployed in the wellsite IIOT gateway connecting both sensors and remote-controllable needle valve (RCNV) with edge computing technology. In design, the gateway processes high-frequency production data, completes a calculation, and then sends a command of "well open" or "well shut-in" to the RCNV. All these steps are managed by the gateway automatically within several seconds. Since 2022, the smart needle valve (SNV) solution has been successfully piloted for five wells with a 6% to 8% gas production incremental and 50% operational expense (OPEX) reduction. The application also reduces carbon dioxide (CO2) emissions and driving risk in the field by reducing personnel visiting the well pad.

Publisher

OTC

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