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The model was benchmarked using experimental results.
The model was benchmarked by comparing with earlier developed 1-D model.
The present model was benchmarked against the test data obtained by the tank measurement to examine the quantitative thermal response of the tank and to establish the reference conditions of the operating variables under no SMP operation.
The phase-field model was benchmarked against experimental studies on surface uplift formation in zirconia reported by Deville et al. (Acta Mater 2004 52 5697, Acta Mater 2004 52 5709).
The new systems model was benchmarked against published results and used to investigate a single-tier nuclear fuel cycle scenario in which light water reactors (LWRs) and 0.5 transuranic (TRU) conversion ratio (CR) sodium-cooled fast reactors are deployed in an equilibrium that results in zero net TRU production.
The model was benchmarked via three tests widely used in the field.
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The thermal hydraulic model is benchmarked with experimental data and good agreement is found.
The model is benchmarked against three exemplar case studies taken from the literature.
The performance of the proposed optimized model is benchmarked with one of the previously reported architectures for a similar system.
The model is benchmarked with internationally published test cases that require simultaneous prediction of indoor environmental conditions, building envelope moisture performance and energy efficiency of a building.
The extension of the analytical model is benchmarked against experiments performed by Leber (2003) on a single stage straight vane separator.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com