Abstract

Horizontal well can increase well productivity and improve the economic benefit, which significantly promotes the development of shale gas, tight oil and heavy oil. Moreover, it plays an important role in the development of natural gas hydrate. Horizontal extension ability is one of the key indexes of horizontal well, but it is always impacted by formation properties and well structure. Therefore, a model is established to analyze the impact of formation properties and well structure as comprehensive as possible, which considers not only traditional influencing factors, like formation pressure and drilling bit parameters, but also other key factors, including cutting particle size, wellbore diameter and cross section. Based on the analysis, some advises are proposed for field application. The analysis indicates that horizontal well has stronger extension ability in the formation with low formation pressure and high fracture pressure, but it is still limited by pump pressure. Under-balanced drilling can strength the extension ability in high formation pressure by reducing drilling mud density. The natural fractures in formation should be noted when drilling long horizontal well. The extension length increases and then decreases with the cutting particle size, so cutting particle has optimal size for the horizontal extension length, which can be adjusted by the rate of penetration and rotation speed. The extension length increases first and then decreases with the gap between drilling string and hole. Considering the demand of rock breaking and cutting sweeping around drilling bit, it is not recommended to adjust the drilling bit parameters. Both the cutting bed height and drilling string eccentricity have impact on horizontal extension length by changing minimum cutting-carry pump rate and annular pressure drop. Under different combinations of above two parameters, minimum cutting-carry pump rate and horizontal extension length are determined by different factors and can be divided into three parts, including acceptable cutting bed height, cutting lifting efficiency, pump pressure and total circulation pressure loss and well bottom pressure and formation fracture pressure. The findings of this study can help for better understanding of horizontal well hydraulic extension length and optimization method.

Highlights

  • To be as comprehensive as possible, the analysis in this paper considers traditional influencing factors, like formation pressure or fracture pressure and drilling bit parameters, and other important factors, including cutting particle size, wellbore diameter and cross section, hoping to provide some advises for field application

  • To analyze the impact of formation properties and well structures, a model is established by taking the hole cleaning, drilling pump condition and formation limitation into account

  • Due to the heavier drilling fluid density caused by high formation pressure, extreme hydraulic horizontal extension length decreases

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Summary

Introduction

Unconventional oil and gas have significantly changed the world energy supply market, like shale/tight gas and oil (Al-Fatlawi 2018; Wang et al 2016a, b; Yang et al 2019; Zhang et al 2017), coal bed methane (Al-Jubori et al 2009; Talapatra et al 2020), heavy oil (Temizel et al 2018; Ghalenavi et al 2020), geothermal energy (Austin Anderson & Behnaz Rezaie 2019; Sui et al 2018) and even gas hydrate (Li et al 2020; Lu et al 2018; Sadeq et al 2020). The hole cleaning meets the requirement when the drilling fluid pump rate is Qcm. and the extreme hydraulic extension length can be defined as Eq (2) This model can be used to analyze the imapct of formation properties and well structure, providing support and guidance based on the result and analysis. The decrease in annular pressure drop is not adequate to compensate the impact of higher minimum pump rate This indicates the suitable combination of drilling string and wellbore can help to extend horizontal well section. (6) and (7), drilling bit flow rate coefficient and flow area have impact on the extreme hydraulic horizontal extension length when the total circulation pressure and formation fracture pressure are the determinant factors. In blue area and yellow area, the factors change to well bottom pressure and formation fracture pressure

Summary and Conclusions
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