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NEUTRON IMAGING CALIBRATION TO MEASURE VOID FRACTION

机译:中子成像校准以测量空隙率

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Void fraction is an intuitive parameter that describes the fraction of vapor in a two-phase flow. It appears as a key variable in most heat transfer and pressure drop correlations used to design evaporating and condensing heat exchangers, as well as determining charge inventory in refrigeration systems. Void fraction measurement is not straightforward, however, and assumptions on the invasiveness of the measuring technique must be made.rnNeutron radiography or neutron imaging has the potential to be a truly non-invasive void fraction measuring technique but has until recently only offered qualitative descriptions of two-phase flow, in terms of flow maldistributions, for example. This paper describes the calibration approach necessary to employ neutron imaging to measure steady-state void fraction.rnExperiments were conducted at the High Flux Isotope Reactor (HFIR) Cold Guide 1D neutron imaging facility at Oak Ridge National Laboratory (ORNL), Oak Ridge, TN, USA.
机译:空隙率是描述两相流中蒸气分数的直观参数。在大多数用于设计蒸发和冷凝热交换器以及确定制冷系统中的装料存量的传热和压降相关性中,它似乎是一个关键变量。然而,空隙率的测量并不简单,必须对测量技术的侵入性做出假设。中子射线照相或中子成像有可能成为一种真正的非侵入性空隙率测量技术,但直到最近才提供了以下方面的定性描述:两相流,例如在流分布不均方面。本文描述了采用中子成像测量稳态空隙率所必需的校准方法.rn实验是在田纳西州橡树岭国家实验室(ORNL)的高通量同位素反应堆(HFIR)冷导1D中子成像设施进行的, 美国。

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