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The performance of this design is demonstrated through simulation studies.
The thermal performance of this design was carried out using THERM.
The device performance of this design is significantly superior to that of conventional devices.
It is shown that the convergence performance of this design is in par with the conventional LMS algorithm.
We illustrate the performance of this design using real trial data in identifying the Phase II dose.
The performance of this design is first evaluated by MATLAB based SIMULINK platform which gives a satisfactory result.
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Then, experiments are carried out to evaluate the machining performance of this designed machine tool.
The molecular dynamics simulation can provide predictive performance of this designed polymer structure before its preparation, which is of guidance significance to the preparation of proton exchange membranes.
The corresponding performances of this design are 40.8%, 54.3%, 0.221 W cm−2 for overall electrical efficiency, Combine Heat and Power (CHP) efficiency and power density, respectively.
The second part is conducted experimentally to measure the performance of the conventional Savonius with the two and three blades; in addition, the optimal blade design (S shape) is tested to compare the performance of this new design with the conventional one or standard semi-circular blade.
The present paper focuses on performance characterizations of this design.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com