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Predictions of NO formation in a series of hydrogen flames with varying levels of helium dilution are compared with experimental results.
Results are presented for an undiluted hydrogen flame at Reynolds number 10,000 and for flames with 20% and 40% helium dilution, with emphasis on the relationships among nitric oxide, mixture fraction, and temperature.
The potential of using the laminar flamelet model for predictions of NOx emissions from turbulent hydrogen jet diffusion flames with various amounts of helium dilution is explored in this study.
The IR spectra were found to vary significantly with the degree of helium dilution.
The end-expiratory lung volume was measured using a simplified closed circuit helium dilution method.
Body composition was calculated based on underwater weighing with simultaneous measurement of residual lung volume using the helium dilution technique (Volugraph 2000, Mijnhardt).
Functional residual capacity (FRC) was measured using a previously described helium dilution method to assess lung recruitment before and after injury [28].
The functional residual capacity and end-expiratory lung volume were measured using a simplified closed circuit helium dilution method by inflating the respiratory system with 0.5 1 l of a mixture of helium and oxygen [19].
In healthy subjects, VA equals total lung capacity (TLC) measured by multiple-breath helium dilution.
The residual volumes (RV) and total lung capacity (TLC) were measured by a helium dilution method.
The latter uses single-breath helium dilution for the measurement of VA.
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