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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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Analysis of possibilities for 1MW electricity generation from waste heat in the port of Rotterdam Page 21 2 PROJECT DEFINITION 2.1 Initial conditions The original research question was formulated in the Research Proposal as: Under which conditions would it be feasible to use waste heat of the companies in Rotterdam in order to produce 1 MW of electricity? We have already announced that the objective electric power is 1MW and we now need to define other variables that will be representative of the chosen location, Rotterdam. And we also need to define the efficiencies of the equipment. Therefore, we are going to define a set of fixed (or initial) conditions. 1) The objective power generated will be 1MW. Borgert and Velásquez realized an exergoeconomic optimization of a Kalina absorption power cycle [Ref. 27] and they determined that the optimum power output in order to minimize costs was 977,875 kW. We will round this figure up to 1MW. Another reason to choose 1MW is that it is easy to compare. • When compared to wind power, we find that a regular wind turbine produces around 1MW electric power as well. • When compared to nuclear power plants, we see that those easily reach 1GW of installed power; so our 1MW power plant would produce 0,1% of a nuclear plant. • When compared to household electricity consumption, we can see that a 1MW plant would supply electricity for around 2.000 Dutch households (see Annex C for more detail). 2) The pressures for the Hot Source (HS) and Cold Source (CS) will be atmospheric: 1 bar. We chose this to avoid complications like adding pumps to increase the pressure of the HS or the CS. 3) The hot source temperature will be 100oC. The reason for this value is the above mentioned estimation about the available heat source at 100oC in the Rotterdam area [Ref. 4].

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