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Effects of varying operating conditions on module performances are discussed.
The module performances were evaluated by pervaporation dehydration of ethanol/water mixtures.
Their module performances were evaluated based on permeation flux experiments, fluid dynamics studies, and tracer-response tests for flow distribution as well as process heat transfer analysis.
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Tests have been performed to explore the module performance under various operating conditions including detector bias voltage, magnetic field, incidence angle, and state of irradiation up to 3×1014 protons per square centimetre.
Further, the results are sensitive to assumptions about module performance, which are expected to continue improving over time".
The module performance was evaluated based on permeation flux experiments.
The MRI data were correlated with overall module performance.
For conventional c-Si modules, this is detrimental to module performance.
Sources of non-ideal module performance are identified that arise from non-uniform module flows.
Low-pressure module performance is comparatively more sensitive to variations of geometric parameters.
Modified connection schemes reduce the serial resistance losses yielding a higher overall module performance.
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