This study analyzes an experimental investigation of an Organic Rankine Cycle (ORC) with R1233zd-E as
working fluid in terms of measuring uncertainty. A methodology for an uncertainty analyses containing
systematic errors and the propagation of random errors has been presented and exemplarily applied for the
measuring uncertainty of the gross thermal efficiency. There, the uncertainty calculated from the
manufacturers’ data sheet uncertainties and the measured uncertainties calculated with the empirical
standard deviation have been compared resulting in the observation, that the empirical standard deviation
is less for all experiments. Furthermore, the influence of using different Equation Of States (EOS) for the
calculation of thermodynamic properties has been analyzed. It can be concluded, that the deviation between
the Helmholtz-Energy EOS and the Peng-Robinson EOS is in the same order of magnitude as the
measurement uncertainty.
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This study analyzes an experimental investigation of an Organic Rankine Cycle (ORC) with R1233zd-E as
working fluid in terms of measuring uncertainty. A methodology for an uncertainty analyses containing
systematic errors and the propagation of random errors has been presented and exemplarily applied for the
measuring uncertainty of the gross thermal efficiency. There, the uncertainty calculated from the
manufacturers’ data sheet uncertainties and the measured uncertainties calculated with t...
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