Physical modelling of fluid flow in Submerged Entry Nozzle and Mould: An experimental approach to study the performance parameters
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Preise | 2015 | 2019 | 2020 |
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Schnitt | Fr. 69.90 (€ 71.42)¹ | Fr. 65.47 (€ 66.90)¹ | Fr. 65.67 (€ 67.10)¹ |
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1
Physical Modelling of Fluid Flow in Submerged Entry Nozzle and Mould (Paperback) (2015)
~EN PB NW
ISBN: 9783659786525 bzw. 3659786527, vermutlich in Englisch, LAP Lambert Academic Publishing, United States, Taschenbuch, neu.
Von Händler/Antiquariat, The Book Depository EURO [60485773], London, United Kingdom.
Language: English. Brand new Book. The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in the upper re-circulating domain in the mould reaches the meniscus where it is in direct contact with molten flux layer. However at higher casting speed the flux layer itself may get entrained into the liquid steel. Control of meniscus turbulence plays an important role in attaining a better quality of product. The meniscus turbulence in the mould is highly influenced by different operating parameters viz. section size of the mould, casting speed, submergence depth, well depth, nozzle port diameter, nozzle port angle and argon gas flow rate. Therefore, optimization of submerged entry nozzle design has become crucial for the successful continuous casting operation. The present investigation was carried out to study the dynamic performance of submerged entry nozzle by water model experiments in two different scaled down models.
Language: English. Brand new Book. The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in the upper re-circulating domain in the mould reaches the meniscus where it is in direct contact with molten flux layer. However at higher casting speed the flux layer itself may get entrained into the liquid steel. Control of meniscus turbulence plays an important role in attaining a better quality of product. The meniscus turbulence in the mould is highly influenced by different operating parameters viz. section size of the mould, casting speed, submergence depth, well depth, nozzle port diameter, nozzle port angle and argon gas flow rate. Therefore, optimization of submerged entry nozzle design has become crucial for the successful continuous casting operation. The present investigation was carried out to study the dynamic performance of submerged entry nozzle by water model experiments in two different scaled down models.
2
Physical modelling of fluid flow in Submerged Entry Nozzle and Mould - An experimental approach to study the performance parameters
~EN PB NW
ISBN: 9783659786525 bzw. 3659786527, vermutlich in Englisch, LAP Lambert Academic Publishing, Taschenbuch, neu.
Lieferung aus: Deutschland, Versandkostenfrei.
Physical modelling of fluid flow in Submerged Entry Nozzle and Mould: The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in the upper re-circulating domain in the mould reaches the meniscus where it is in direct contact with molten flux layer. However at higher casting speed the flux layer itself may get entrained into the liquid steel. Control of meniscus turbulence plays an important role in attaining a better quality of product. The meniscus turbulence in the mould is highly influenced by different operating parameters viz. section size of the mould, casting speed, submergence depth, well depth, nozzle port diameter, nozzle port angle and argon gas flow rate. Therefore, optimization of submerged entry nozzle design has become crucial for the successful continuous casting operation. The present investigation was carried out to study the dynamic performance of submerged entry nozzle by water model experiments in two different scaled down models. Englisch, Taschenbuch.
Physical modelling of fluid flow in Submerged Entry Nozzle and Mould: The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in the upper re-circulating domain in the mould reaches the meniscus where it is in direct contact with molten flux layer. However at higher casting speed the flux layer itself may get entrained into the liquid steel. Control of meniscus turbulence plays an important role in attaining a better quality of product. The meniscus turbulence in the mould is highly influenced by different operating parameters viz. section size of the mould, casting speed, submergence depth, well depth, nozzle port diameter, nozzle port angle and argon gas flow rate. Therefore, optimization of submerged entry nozzle design has become crucial for the successful continuous casting operation. The present investigation was carried out to study the dynamic performance of submerged entry nozzle by water model experiments in two different scaled down models. Englisch, Taschenbuch.
3
Physical modelling of fluid flow in Submerged Entry Nozzle and Mould
~EN NW AB
ISBN: 9783659786525 bzw. 3659786527, vermutlich in Englisch, neu, Hörbuch.
Lieferung aus: Niederlande, Lieferzeit: 5 Tage, zzgl. Versandkosten.
The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in the upper re-circulating domain in the mould reaches the meniscus where it is in direct contact with molten flux layer. However at higher casting speed the flux layer itself may get entrained into the liquid steel. Control of meniscus turbulence plays an important role in attaining a better quality of product. The meniscus turbulence in the mould is highly influenced by different operating parameters viz. section size of the mould, casting speed, submergence depth, well depth, nozzle port diameter, nozzle port angle and argon gas flow rate. Therefore, optimization of submerged entry nozzle design has become crucial for the successful continuous casting operation. The present investigation was carried out to study the dynamic performance of submerged entry nozzle by water model experiments in two different scaled down models.
The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in the upper re-circulating domain in the mould reaches the meniscus where it is in direct contact with molten flux layer. However at higher casting speed the flux layer itself may get entrained into the liquid steel. Control of meniscus turbulence plays an important role in attaining a better quality of product. The meniscus turbulence in the mould is highly influenced by different operating parameters viz. section size of the mould, casting speed, submergence depth, well depth, nozzle port diameter, nozzle port angle and argon gas flow rate. Therefore, optimization of submerged entry nozzle design has become crucial for the successful continuous casting operation. The present investigation was carried out to study the dynamic performance of submerged entry nozzle by water model experiments in two different scaled down models.
4
Physical modelling of fluid flow in Submerged Entry Nozzle and Mould (2015)
~EN HC NW
ISBN: 9783659786525 bzw. 3659786527, vermutlich in Englisch, LAP Lambert Academic Publishing, gebundenes Buch, neu.
Von Händler/Antiquariat, moluna.de [73551232], Greven, Germany.
The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in th.
The liquid steel flow pattern inside the slab caster mould plays a vital role in governing both the quality and productivity of the caster. The steel flow in th.
6
Physical modelling of fluid flow in Submerged Entry Nozzle and Mould
~EN NW
ISBN: 9783659786525 bzw. 3659786527, vermutlich in Englisch, neu.
Lieferung aus: Vereinigtes Königreich Grossbritannien und Nordirland, Delivery type: Free, Delivery: Worldwide, Offer location: United Kingdom, Free shipping.
Von Händler/Antiquariat, baham_books.
Fixed price.
Von Händler/Antiquariat, baham_books.
Fixed price.
7
Symbolbild
Physical Modelling of Fluid Flow in Submerged Entry Nozzle and Mould (2010)
~EN PB NW
ISBN: 9783659786525 bzw. 3659786527, vermutlich in Englisch, LAP Lambert Academic Publishing, Taschenbuch, neu.
Lieferung aus: Vereinigtes Königreich Grossbritannien und Nordirland, plus shipping, Shipping area: EUR.
Von Händler/Antiquariat, Books2anywhere, GLOUCESTERSHIRE, Fairford, [RE:4].
Softcover.
Von Händler/Antiquariat, Books2anywhere, GLOUCESTERSHIRE, Fairford, [RE:4].
Softcover.
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