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GREAT NECK WATER POLLUTION CONTROL DISTRICT NASSAU COUNTY, NEW YORK MICROTURBINE INSTALLATION FEASIBILITY STUDY

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GREAT NECK WATER POLLUTION CONTROL DISTRICT NASSAU COUNTY, NEW YORK MICROTURBINE INSTALLATION FEASIBILITY STUDY ( great-neck-water-pollution-control-district-nassau-county-ne )

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Supercritical Carbon Dioxide Circulated EGS Combined with IGCC in New Mexico Although there are certain similarities between the oil and natural gas reservoirs and geothermal reservoirs, there are differences that are specific to geothermal reservoirs alone: - Relatively high reservoir temperatures - Volcanic origin of reservoir rocks with highly fractured characteristics - Chemical precipitation of solids within the reservoir during production - Boiling of water within the reservoir and/or wellbore 3.2.2 CMG STARSTM Simulator CMG STARSTM is a thermal, K-value compositional, chemical reaction and geomechanics reservoir simulator (CMG STARSTM manual, 2008). It is well suited for modeling geothermal systems, taking into account thermal as well as geomechanic effects. There are 9 different parts for which information must be fed in order to generate a model: i) Input/Output Control Parameters that control the simulator‘s input and output activities are defined. No significant changes are introduced in this section. ii) Reservoir Description This section contains data describing the basic reservoir definition and the simulation grid used to represent it. These data can be classified into simulation grid and refinement grid options, choice of natural fracture reservoir options, well discretization option, basis reservoir rock properties and sector options. For EGS, dual porosity and dual permeability model is used. iii) Other Reservoir Properties This section contains data describing other reservoir properties. These data can be classified into rock compressibility, reservoir rock thermal properties and overburden heat loss options. This section is particularly important for EGS simulation since it incorporates heat balance into simulation. Both, overburden and underburden, heat effects are taken into consideration. iv) Component properties This section indicates number of each type of component in preparation for fluid data input. In short, we have to provide how many components are present in each phase so that their properties might be calculated. For EGS, it initially assumed that only CO2 is present in liquid as well as vapor phase. v) Rock-fluid data Relative permeabilities, capillary pressures and component adsorption, diffusion and dispersion are defined. Since this data is not available at this time, suitable Penn State University | 3.2 Reservoir Simulation 25

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