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An optimal length to diameter ratio exists for the maximum entrainment ratio, and it varies with operational factors.
The results show that there is an optimal position for the maximum entrainment ratio, which corresponds to the lowest pressure around the second shock position.
However, in order to have the maximum entrainment ratio and consequently reduce energy consumption, integration of MED TVC with MED desalination must be optimized into the position of thermo-compressor suction.
The entrainment ratios obtained by the numerical simulation agreed well with the field data, giving a maximum entrainment ratio up to 93%, proving the optimized geometrical factors of a natural gas ejector.
Using the Laval nozzle, which produces supersonic flow, the performance of the ejector becomes high, and the maximum entrainment ratio, which is defined as the volumetric ratio between ejected fuel flow and sucked air flow, reached 36.8.
The results show that there is always an optimal location (around the place where the lowest pressure is) for the maximum entrainment ratio, and it moves downstream as the motive or induced pressure increases.
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There is an optimized steam nozzle position under the given operating condition where the maximum of entrainment ratio was observed.
The maximum increase of the entrainment ratio is 35.8% compared to that at an NXP of −30 mm.
This study focuses on the determination of the maximum STCR value and entrainment ratio via numerical geometric analyses for a micro combined heat and power (μ-CHP) system based on 4 kW SOFC, utilizing methane.
For an air breathing engine based on a hydrogen fuelled rocket an exchange inlet is designed which yields a predicted air entrainment ratio within 95% of the theoretical maximum.
The air entrainment ratio Cα is proposed in the correlation to predict the maximum ceiling temperature based on previous plume theory, considering the low pressure effect and entrainment coefficient.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com