1 цитирование (Scopus)

Выдержка

A new technique to perform the analysis of multiphase fluid flow based on wave dispersive X-ray absorptiometry is suggested. The numerical simulation and comparison of this technique with currently used approaches are provided and a way to increase the luminosity intensity is found that includes the usage the X-ray focusing optics by a bent crystal and a polycapillary semilens. Based on numerical simulation of radiation spectrum the influence of the bent crystal on the luminosity is evaluated and experimentally shown the advantages of using the multicapillary optics.

Язык оригиналаАнглийский
Страницы (с-по)276-280
Число страниц5
ЖурналNuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms
Том355
DOI
СостояниеОпубликовано - 9 июн 2015

Отпечаток

multiphase flow
Multiphase flow
Luminance
Optics
luminosity
optics
X rays
Crystals
radiation spectra
Computer simulation
fluid flow
crystals
x rays
simulation
Radiation

ASJC Scopus subject areas

  • Nuclear and High Energy Physics
  • Instrumentation

Цитировать

WD-XRA technique in multiphase flow measuring. / Gogolev, A. S.; Cherepennikov, Y. M.; Vukolov, A. V.; Rezaev, R. O.; Stuchebrov, Sergei Gennadievich; Hampai, D.; Dabagov, S. B.; Liedl, A.; Polese, T.

В: Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, Том 355, 09.06.2015, стр. 276-280.

Результат исследований: Материалы для журналаСтатья

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abstract = "A new technique to perform the analysis of multiphase fluid flow based on wave dispersive X-ray absorptiometry is suggested. The numerical simulation and comparison of this technique with currently used approaches are provided and a way to increase the luminosity intensity is found that includes the usage the X-ray focusing optics by a bent crystal and a polycapillary semilens. Based on numerical simulation of radiation spectrum the influence of the bent crystal on the luminosity is evaluated and experimentally shown the advantages of using the multicapillary optics.",
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T1 - WD-XRA technique in multiphase flow measuring

AU - Gogolev, A. S.

AU - Cherepennikov, Y. M.

AU - Vukolov, A. V.

AU - Rezaev, R. O.

AU - Stuchebrov, Sergei Gennadievich

AU - Hampai, D.

AU - Dabagov, S. B.

AU - Liedl, A.

AU - Polese, T.

PY - 2015/6/9

Y1 - 2015/6/9

N2 - A new technique to perform the analysis of multiphase fluid flow based on wave dispersive X-ray absorptiometry is suggested. The numerical simulation and comparison of this technique with currently used approaches are provided and a way to increase the luminosity intensity is found that includes the usage the X-ray focusing optics by a bent crystal and a polycapillary semilens. Based on numerical simulation of radiation spectrum the influence of the bent crystal on the luminosity is evaluated and experimentally shown the advantages of using the multicapillary optics.

AB - A new technique to perform the analysis of multiphase fluid flow based on wave dispersive X-ray absorptiometry is suggested. The numerical simulation and comparison of this technique with currently used approaches are provided and a way to increase the luminosity intensity is found that includes the usage the X-ray focusing optics by a bent crystal and a polycapillary semilens. Based on numerical simulation of radiation spectrum the influence of the bent crystal on the luminosity is evaluated and experimentally shown the advantages of using the multicapillary optics.

KW - Dual wave technology

KW - Flowmeter

KW - Multiphase fluid

KW - Polycapillary optics

KW - X-ray absorptiometry

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JO - Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms

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