Analytical and experimental study of a reverse circulation drill bit with an annular slit

A new type of drill bit designed with an annular slit was developed to enhance the reverse circulation effect of the down-the-hole hammer drilling technology. A computational fluid dynamics code, Fluent, was used to simulate the flow phenomena inside the drill bit. The simulation results show that t...

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Main Authors: Pinlu Cao, Yunwang Chen, Miaomiao Liu, Baoyi Chen, Jinsong Wang
Format: Article
Language:English
Published: SAGE Publishing 2016-09-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814016669471
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spelling doaj-17549e7019b746eeb9beb98df9a21c452020-11-25T02:52:30ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402016-09-01810.1177/1687814016669471Analytical and experimental study of a reverse circulation drill bit with an annular slitPinlu CaoYunwang ChenMiaomiao LiuBaoyi ChenJinsong WangA new type of drill bit designed with an annular slit was developed to enhance the reverse circulation effect of the down-the-hole hammer drilling technology. A computational fluid dynamics code, Fluent, was used to simulate the flow phenomena inside the drill bit. The simulation results show that the air flowing through the annular slit moves upward along the wall of the central passage of the annular drill bit and that there is no interference phenomenon similar to the normal drill bit, which is beneficial for the formation of reverse circulation. Meanwhile, the new drill bit with the annular slit was produced and tested in the laboratory. The results show that for the annular drill bit with the flushing nozzles closed, the mass flow rate of the sucked air is approximately 63.78 g/s, which is 1.76 times that of the normal drill bit, while it is about 2.46 times if the flushing nozzles are opened. In addition, many factors can affect the reverse circulation effect of the annular drill bit, including the slit width, the distance between the annular slit and the working surface of the drill bit, and the flow direction of the gas ejected from the annular slit.https://doi.org/10.1177/1687814016669471
collection DOAJ
language English
format Article
sources DOAJ
author Pinlu Cao
Yunwang Chen
Miaomiao Liu
Baoyi Chen
Jinsong Wang
spellingShingle Pinlu Cao
Yunwang Chen
Miaomiao Liu
Baoyi Chen
Jinsong Wang
Analytical and experimental study of a reverse circulation drill bit with an annular slit
Advances in Mechanical Engineering
author_facet Pinlu Cao
Yunwang Chen
Miaomiao Liu
Baoyi Chen
Jinsong Wang
author_sort Pinlu Cao
title Analytical and experimental study of a reverse circulation drill bit with an annular slit
title_short Analytical and experimental study of a reverse circulation drill bit with an annular slit
title_full Analytical and experimental study of a reverse circulation drill bit with an annular slit
title_fullStr Analytical and experimental study of a reverse circulation drill bit with an annular slit
title_full_unstemmed Analytical and experimental study of a reverse circulation drill bit with an annular slit
title_sort analytical and experimental study of a reverse circulation drill bit with an annular slit
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2016-09-01
description A new type of drill bit designed with an annular slit was developed to enhance the reverse circulation effect of the down-the-hole hammer drilling technology. A computational fluid dynamics code, Fluent, was used to simulate the flow phenomena inside the drill bit. The simulation results show that the air flowing through the annular slit moves upward along the wall of the central passage of the annular drill bit and that there is no interference phenomenon similar to the normal drill bit, which is beneficial for the formation of reverse circulation. Meanwhile, the new drill bit with the annular slit was produced and tested in the laboratory. The results show that for the annular drill bit with the flushing nozzles closed, the mass flow rate of the sucked air is approximately 63.78 g/s, which is 1.76 times that of the normal drill bit, while it is about 2.46 times if the flushing nozzles are opened. In addition, many factors can affect the reverse circulation effect of the annular drill bit, including the slit width, the distance between the annular slit and the working surface of the drill bit, and the flow direction of the gas ejected from the annular slit.
url https://doi.org/10.1177/1687814016669471
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AT yunwangchen analyticalandexperimentalstudyofareversecirculationdrillbitwithanannularslit
AT miaomiaoliu analyticalandexperimentalstudyofareversecirculationdrillbitwithanannularslit
AT baoyichen analyticalandexperimentalstudyofareversecirculationdrillbitwithanannularslit
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