A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data
Rock drillability is a comprehensive index that indicates the ease of drilling a hole in the rock mass, which is a main basis for the design of drilling bits, the optimization of drilling operational parameters, and the prediction of rate of penetration. This paper established a conversion relations...
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Online Access: | https://doi.org/10.1177/0144598719901091 |
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doaj-81821a093c7544d19ebc81899ff2c30b2020-11-25T04:10:02ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542020-07-013810.1177/0144598719901091A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test dataYannong Han0Xiaorong Li1Yongcun Feng2 State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, Sinopec Research Institute of Petroleum Engineering, Beijing, China College of Safety and Ocean Engineering, China University of Petroleum, Beijing, China College of Petroleum Engineering, China University of Petroleum, Beijing, ChinaRock drillability is a comprehensive index that indicates the ease of drilling a hole in the rock mass, which is a main basis for the design of drilling bits, the optimization of drilling operational parameters, and the prediction of rate of penetration. This paper established a conversion relationship between mechanical specific energy measured from micro-drilling tests and mechanical specific energy measured from scratch tests, based on the consistency of rock breaking mechanism between these two types of tests. By incorporating the methodology of calculating rock drillability grade of polycrystalline diamond compact bits, a new mathematical model for predicting rock drillability of polycrystalline diamond compact bits is developed. Subsequently, a new method for acquiring continuous rock drillability profile by scratching the core surface is developed. A wide range of rocks with different hardness were tested by the proposed scratch method. The results show that the new model has high consistency with the results of laboratory micro-drilling tests. For example, the average errors of sandstone, shale, and carbonate test results are only 7.41%, 8.18%, and 4%, respectively. The new method can fully characterize the effect of mineral composition, cementation strength, and microstructure of rock on drillability. Besides, the new model has high utilization efficiency of expensive core samples because the core usually remains nondestructive after scratch tests.https://doi.org/10.1177/0144598719901091 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yannong Han Xiaorong Li Yongcun Feng |
spellingShingle |
Yannong Han Xiaorong Li Yongcun Feng A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data Energy Exploration & Exploitation |
author_facet |
Yannong Han Xiaorong Li Yongcun Feng |
author_sort |
Yannong Han |
title |
A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data |
title_short |
A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data |
title_full |
A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data |
title_fullStr |
A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data |
title_full_unstemmed |
A new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data |
title_sort |
new approach to evaluate rock drillability of polycrystalline diamond compact bits using scratch test data |
publisher |
SAGE Publishing |
series |
Energy Exploration & Exploitation |
issn |
0144-5987 2048-4054 |
publishDate |
2020-07-01 |
description |
Rock drillability is a comprehensive index that indicates the ease of drilling a hole in the rock mass, which is a main basis for the design of drilling bits, the optimization of drilling operational parameters, and the prediction of rate of penetration. This paper established a conversion relationship between mechanical specific energy measured from micro-drilling tests and mechanical specific energy measured from scratch tests, based on the consistency of rock breaking mechanism between these two types of tests. By incorporating the methodology of calculating rock drillability grade of polycrystalline diamond compact bits, a new mathematical model for predicting rock drillability of polycrystalline diamond compact bits is developed. Subsequently, a new method for acquiring continuous rock drillability profile by scratching the core surface is developed. A wide range of rocks with different hardness were tested by the proposed scratch method. The results show that the new model has high consistency with the results of laboratory micro-drilling tests. For example, the average errors of sandstone, shale, and carbonate test results are only 7.41%, 8.18%, and 4%, respectively. The new method can fully characterize the effect of mineral composition, cementation strength, and microstructure of rock on drillability. Besides, the new model has high utilization efficiency of expensive core samples because the core usually remains nondestructive after scratch tests. |
url |
https://doi.org/10.1177/0144598719901091 |
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