شماره ركورد كنفرانس :
4046
عنوان مقاله :
Computational Fluid dynamic on Bit Hydraulic Performance
عنوان به زبان ديگر :
Computational Fluid dynamic on Bit Hydraulic Performance
پديدآورندگان :
Kiyani Alireza alirezakiyani.petro@yahoo.com Amirkabir University of Technology , Moarefvand Parviz parvizz@aut.ac.ir Amirkabir University of Technology , Dehvedar Mohsen dehvedar@aut.ac.ir Amirkabir University of Technology , Keshavarz Moraveji Mostafa moraveji@aut.ac Amirkabir University of Technology
تعداد صفحه :
16
كليدواژه :
CFD , Computational Fluid Dynamic , Bit , Hydraulic
سال انتشار :
1396
عنوان كنفرانس :
چهارمين كنفرانس بين المللي نوآوري هاي اخير در شيمي و مهندسي شيمي
زبان مدرك :
انگليسي
چكيده فارسي :
Hydraulics can significantly affect bit performance in applications where cuttings volume, formation types, and rig pressure limitations lead to poor fluid dynamics that compromise cleaning and cooling, and result in down-hole bit balling that negatively affects penetration rates and higher bit wear. A key mitigation challenge is improving cleaning efficiency without experiencing a significant pressure drop across the bit. To improve the hydraulics, the fluid flow pattern across the drill bit should be optimized for low pressure drop, low recirculation flow and high velocity. This research including computational fluid dynamics (CFD) simulations which were done in some articles and then reviewing their validation by some related experimental tests for better understand flow and velocity across the bit.
چكيده لاتين :
Hydraulics can significantly affect bit performance in applications where cuttings volume, formation types, and rig pressure limitations lead to poor fluid dynamics that compromise cleaning and cooling, and result in down-hole bit balling that negatively affects penetration rates and higher bit wear. A key mitigation challenge is improving cleaning efficiency without experiencing a significant pressure drop across the bit. To improve the hydraulics, the fluid flow pattern across the drill bit should be optimized for low pressure drop, low recirculation flow and high velocity. This research including computational fluid dynamics (CFD) simulations which were done in some articles and then reviewing their validation by some related experimental tests for better understand flow and velocity across the bit.
كشور :
ايران
لينک به اين مدرک :
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