Dual hydrocarbon–geothermal energy exploitation

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Dual hydrocarbon–geothermal energy exploitation ( dual-hydrocarbon–geothermal-energy-exploitation )

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Netherlands Journal of Geosciences e12-15 Figure 21. DoubletCalc 1.4.3 result. Both input and output are given; base case is used as input for economics. With a higher reservoir permeability, a lower drawdown pressure is required in order to produce the imposed gas flow rate, which subsequently leads to a relatively higher BHP in ROD-102 and a relatively higher pressure in the reservoir. Furthermore, the lower drawdown pressure causes a slight delay in water production at the gas production well. This results in a higher total gas produc- tion. Due to this improvement, the relative synergetic effect on gas production in ROD-102 is less when the geothermal wells are active. Therefore, it can be deduced that a higher permeability does not necessarily lead to an increased effect by synergy. However, the slower decrease in reservoir pressure does have a positive effect on the required pump pressure of the geothermal production well, thereby improving the COP and thus the eco- nomics of the geothermal system. The positive effect of a synergetic geothermal – natural gas development also depends on the presence of a permeability trend in the produced reservoir and its orientation relative to the flow paths towards the gas- and geothermal production wells. With an increasing reservoir permeability from the geothermal wells towards the gas production well, the preferred gas production flow path from ROD-102 is in the opposite direction to the GWC. While this situation leads to an increase in total gas produc- tion in the simulations, the relative impact on the geothermal exploitation is lower due to the fact that this trend results in Downloaded from https://www.cambridge.org/core. IP address: 173.229.12.141, on 13 Jan 2021 at 23:29:16, subject to the Cambridge Core terms of use, available at https://www.cambridge.org/core/terms. https://doi.org/10.1017/njg.2019.11

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