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 1000 kg/s Figure 17: Comparison of CMG and SRM model results and the SRM model. The comparison shows that the CMG model follows the trend predicted by SRM model. Important point to note at this time is that the injection rate for CMG model is about 880 kg/s while that shown in SRM model is 1000 kg/s. Hence, the curve in SRM model is shifted slightly to the left i.e. thermal breakthrough in SRM occurs at an earlier time. 3.5 Simplified Thermal Drawdown Calculations A variety of issues relate specifically to interfacing scCO2-EGS with IGCC. These include all the reservoir interaction behaviors important in ensuring the viability of EGS: viz. reservoir stimulation and development concurrent with developing heat-transfer area within the reservoir. For scCO2-EGS these include the important and poorly defined role of fluid-rock interactions and their impact on permeability, heat-transfer area and strength characteristics of the reservoir. The latter is ultimately related to production-induced seismicity and the related development of permeability by hydroshears. Although these issues are crucial and relate fundamentally to the viability of scCO2-EGS they are beyond the scope of this work. Here we limit ourselves to the highest-level linkages between scCO2-EGS and IGCC – these relate to anticipated thermal output from such a system and mechanism of interfacing the output stream with IGCC via surface plant. We discuss only the issue of thermal output in the following in particular related to anticipated thermal drawdown within the reservoir. This analysis relies on the selection of (i) an appropriate reservoir configuration and (ii) appropriate mechanistic models for thermal drawdown. 3.5.1 Reservoir configurations A variety of potential configurations exist for reservoir development. For the demonstration-level projects currently observed, these configurations have typically been a doublet (single injector and producer) or flanked doublet (single injector flanked by dual Penn State University | 3.5 Simplified Thermal Drawdown Calculations 34

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