2015
DOI: 10.1002/aenm.201401942
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Novel Electrothermodynamic Power Generation

Abstract: The electrothermodynamic cycle is described by the loop of the electric displacement, D , versus the electric fi eld, E ( D-E loop). In Figure 1 a, a schematic of the theoretical Olsen cycle is presented as ABCD. The cycle begins at a low temperature ( T low ) with no electric fi eld (point A). When the electric fi eld ( E 1 ) is applied, the state moves to point B (path AB), corresponding to the hysteresis loop section of the material obtained at T low (see Figure S1b, Supporting Information), denoting an inc… Show more

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Cited by 19 publications
(60 citation statements)
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“…As a result, the D-E loop of the new cycle resulted in a 1.9-fold larger area and 1.3-fold larger practical net energy than that produced by the Olsen cycle with the same input energy. [1] Furthermore, a net generated energy of 0.1 mW cm −3 was obtained for the duration of the official standard test for light-duty vehicles in Japan (JC08) with a real engine. [1] The proposed new cycle indicated the possibility for real-world applications.…”
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confidence: 99%
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“…As a result, the D-E loop of the new cycle resulted in a 1.9-fold larger area and 1.3-fold larger practical net energy than that produced by the Olsen cycle with the same input energy. [1] Furthermore, a net generated energy of 0.1 mW cm −3 was obtained for the duration of the official standard test for light-duty vehicles in Japan (JC08) with a real engine. [1] The proposed new cycle indicated the possibility for real-world applications.…”
mentioning
confidence: 99%
“…[1] Furthermore, a net generated energy of 0.1 mW cm −3 was obtained for the duration of the official standard test for light-duty vehicles in Japan (JC08) with a real engine. [1] The proposed new cycle indicated the possibility for real-world applications.…”
mentioning
confidence: 99%
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