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1MW electricity generation from waste heat port of Rotterdam

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1MW electricity generation from waste heat port of Rotterdam ( 1mw-electricity-generation-from-waste-heat-port-rotterdam )

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Page 92 Analysis of possibilities for 1MW electricity generation from waste heat in the port of Rotterdam 36 37 38 E134 E245 NH3 (R717) 42.3 147.1 34.2 170.9 113.3 132.3 189.78E-05 199.94E-05 425.72E-05 For all refrigerants, except for ammonia, a simple as well as a more complex thermodynamic model is available. The simple model is the equation of state according to Carnahan-Starling-DeSantis (CSD). This equation represents the properties of refrigerants quite well between certain limits. The model can easily be extended to mixtures of refrigerants. However, the model is not suited to calculate properties over wide ranges of pressure and temperature. There are two different thermodynamic models available, which are more complex and can predict the properties of refrigerants more accurately over wide ranges of pressure and temperature. The MBWR-model (Modified Bennedict-Webb-Rubin) for the calculation of thermodynamic properties is available for 11 refrigerants. These refrigerants are marked with an asterisk *) in the table shown below. For the remaining refrigerants the ECS-model (Extended Corresponding States) is available. The properties of ammonia can be calculated with the high-accuracy equation of state developed by Haar en Gallagher (see: J. Phys. Chem. Ref. Data 7, 635-792 (1978)). The transport properties of refrigerants are always calculated with the ECS-model. Besides the pure refrigerants listed in Table 4-1 a large number of commercially available refrigerant mixtures is available. Table 4-2 lists the mixtures presently available in Cycle- Tempo and their corresponding compositions. The thermodynamic properties are calculated with the CSD-model, and the transport properties with the ECS-model. Table 4-2: refrigerant mixtures Mixture Components R401A R22/R152a/R124 R401B R22/R152a/R124 R401C R22/R152a/R124 R402A R22/R290/R125 R402B R22/R290/R125 R403A R22/R218/R290 R403B R22/R218/R290 R404A R125/R134a/R143a R405A R22/R152a/R142b/RC318 R406A R22/R142b/R600a R407A R32/R125/R134a R407B R32/R125/R134a R407C R32/R125/R134a Composition (mass %) 53/13/34 61/11/28 33/15/52 38/2/60 60/2/38 75/20/5 56/39/5 44/4/52 45/7/5.5/42.5 55/41/4 20/40/40 10/70/20 23/25/52

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