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On the Efficiency for Non-Endoreversible Stirling and Ericsson Cycles 被引量:1
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作者 delfino ladino-luna Pedro Portillo-Díaz Ricardo T. Páez-Hernández 《Journal of Modern Physics》 2013年第12期1-7,共7页
An analysis of the Stirling and Ericsson cycles from the point of view of the finite time thermodynamics is made by assuming the existence of internal irreversibilities in an engine modeled by these cycles, and the id... An analysis of the Stirling and Ericsson cycles from the point of view of the finite time thermodynamics is made by assuming the existence of internal irreversibilities in an engine modeled by these cycles, and the ideal gas as working substance is considered. Expressions of efficiency in both regimes maximum power output and maximum ecological function are also shown. Appropriate variables are introduced so that the objective functions, namely power output, ecological function and efficiency can be functions of the reservoirs temperatures ratio and certain “measurable” parameters as a thermal conductance, the general constant of gases and the compression ratio of the cycle. Several results from the finite time thermodynamics literature are used, so that the developed methodology leads directly to appropriate expressions of the objective functions in order to simplify the optimization process. 展开更多
关键词 Thermal Cycles EFFICIENCY Power OUTPUT ECOLOGICAL Function
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Effects of Time Delays in a Dynamical Heart Model
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作者 Ricardo Paez-Hernfindez Maribel Zamora-Gomez +2 位作者 Pedro Portillo-Diaz delfino ladino-luna Ruben Luevano-Enriquez 《Journal of Chemistry and Chemical Engineering》 2014年第3期320-323,共4页
关键词 动力学模型 心脏 时滞 非线性动力学 时间延迟 动脉血压 持续振荡 固定点
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Local Stability of Curzon-Ahlborn Cycle with Non-Linear Heat Transfer for Maximum Power Output Regime
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作者 delfino ladino-luna Pedro Portillo-Díaz Ricardo T. Páez-Hernández 《Journal of Modern Physics》 2013年第7期22-27,共6页
The study of local stability of thermal engines modeled as an endoreversible Curzon and Ahlborn cycle is shown. It is assumed a non-linear heat transfer for heat fluxes in the system (engine + environments). A semisum... The study of local stability of thermal engines modeled as an endoreversible Curzon and Ahlborn cycle is shown. It is assumed a non-linear heat transfer for heat fluxes in the system (engine + environments). A semisum of two expressions of the efficiency found in the literature of finite time thermodynamics for the maximum power output regime is considered in order to make the analysis. Expression of variables for local stability and power output is found even graphic results for important parameters in the analysis of stability, and a phase plane portrait is shown. 展开更多
关键词 Local Stability Thermal Engines NON-LINEAR Heat TRANSFER
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