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Computers & Chemical Engineering, 1987
Abstract The following sample flowsheeting problem is the most recent in a series initiated in the Computer Working Party of the European Federation of Chemical Engineering. Results can be sent to the authors and will be discussed at the Chemdata '88 Congress in Goteborg with the possibility of subsequent publication.
J. van Nuland, J. Renet
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Abstract The following sample flowsheeting problem is the most recent in a series initiated in the Computer Working Party of the European Federation of Chemical Engineering. Results can be sent to the authors and will be discussed at the Chemdata '88 Congress in Goteborg with the possibility of subsequent publication.
J. van Nuland, J. Renet
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Optimizing Energy Conversion Using Organic Rankine Cycles and Supercritical Rankine Cycles
ASME 2011 5th International Conference on Energy Sustainability, Parts A, B, and C, 2011The optimization of energy conversion systems is of great significance in the utilization of low-grade heat. This paper presents an analysis of 6 working fluids in 12 thermodynamic cycles to optimize the energy conversion systems. The optimal exergy efficiency of the system is dependent on the type of the thermodynamic cycle, the choice of appropriate ...
Huijuan Chen +3 more
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Organic Rankine Cycle as Bottoming Cycle to a Combined Brayton and Clausius - Rankine Cycle
Key Engineering Materials, 2013A preliminary evaluation has been made of a possibility of bottoming of a conventional Brayton cycle cooperating with the CHP power plant with the organic Rankine cycle installation. Such solution contributes to the possibility of annual operation of that power plant, except of operation only in periods when there is a demand for the heat.
Dariusz Mikielewicz +2 more
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Buoyancy organic Rankine cycle
Renewable Energy, 2011Abstract In the scope of renewable energy, we draw attention to a little known technique to harness solar and geothermal energy. The design here proposed and analyzed is a conceptual hybrid of several patents. By means of a modified organic Rankine cycle, energy is obtained utilizing buoyancy force of a working fluid.
J. Schoenmaker, J.F.Q. Rey, K.R. Pirota
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Heat Recovery Using Organic Rankine Cycle
Vestnik MEI, 2021Heat losses in industrial processes can be divided into three sections (high-, medium-, and low-temperature heat), depending on the temperature of the exhaust gases. This heat is usually recovered either by heat exchangers or by a closed Rankine cycle. However, about 60% of low-temperature heat losses remain irreplaceable.
Dakkah Baydaa Bo +2 more
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2021
Yenilenebilir enerji kaynaklarının ısı enerjisini veya atık ısı enerjisini kullanarak güç üretmek için en yaygın kullanılanlardan biri Organik Rankine çevrimidir. Trilateral Çevrim ise Organik Rankine çevriminden türbin elemanı yerine genleştirici kullanılması yönüyle ayrılır.
BİLİR SAĞ, Nagihan +1 more
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Yenilenebilir enerji kaynaklarının ısı enerjisini veya atık ısı enerjisini kullanarak güç üretmek için en yaygın kullanılanlardan biri Organik Rankine çevrimidir. Trilateral Çevrim ise Organik Rankine çevriminden türbin elemanı yerine genleştirici kullanılması yönüyle ayrılır.
BİLİR SAĞ, Nagihan +1 more
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Bottoming micro-Rankine cycles for micro-gas turbines
Applied Thermal Engineering, 2007Abstract This paper investigates the possibility of enhancing the performances of micro-gas turbines through the addition of a bottoming organic Rankine cycle which recovers the thermal power of the exhaust gases typically available in the range of 250–300 °C.
INVERNIZZI, Costante Mario +2 more
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Cycles organiques de Rankine COR
Physique énergétique, 2016Les cycles organiques de Rankine sont des cycles de production de puissance mecanique a partir de chaleur. Ce sont des variantes des cycles a vapeur d’eau, utilises lorsque la source chaude a partir de laquelle on souhaite produire de la puissance mecanique est a basse ou moyenne temperature, ou lorsque la puissance installee est faible et que les ...
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Comparison of a Basic Organic Rankine Cycle and a Parallel Double-Evaporator Organic Rankine Cycle
Heat Transfer Engineering, 2016ABSTRACTThe applications of zeotropic mixtures and multi-evaporator systems are two viable options to improve the performance of the organic Rankine cycle (ORC). This paper conducts the thermo-economic comparison of a basic ORC with R245fa/R600a and a parallel double-evaporator organic Rankine cycle (PDORC) with R245fa.
Yiping Dai +4 more
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