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generator; method for generating output power using the generator; core configured for use in a vessel heat exchange process; heat exchange system; second medium cooling method using the heat exchange system; and heat exchanger
generator; method for generating output power using the generator; core configured for use in a vessel heat exchange process; heat exchange system; second medium cooling method using the heat exchange system; and heat exchanger
generator summary; method for generating output power using the generator; core configured for use in a vessel heat exchange process; heat exchange system; second medium cooling method using the heat exchange system; The heat exchanger is a generator comprising: a thermal differential module with a first high temperature source configured to provide a high temperature working medium, a second low temperature source configured to provide a high temperature working medium. low temperature and a heat mechanism in fluid communication with the first and second sources, configured to maintain a temperature difference between them by at least one of the following steps: providing heat to the working medium in said first source and remove heat from the working medium at said second source; a pressure module comprising a pressure means that is in selective fluid communication with the working medium of the first high temperature source and the working medium of the second low temperature source, to alternately perform a heat exchange process with the high / low temperature working medium, to have its temperature fluctuation between a minimum operating temperature and a maximum operating temperature corresponding to the high and low temperatures of the respective working medium; a conversion module for mechanical communication with the pressure medium, configured to use pressure medium temperature fluctuation for output energy production; and a thermal communication heat recovery arrangement with at least one of the heat differential module and the pressure module, configured to receive at least a portion of the high and low temperature working medium thermal energy that has not been transferred. to the pressure medium during said heat exchange process and redirecting said thermal energy back to one of the heat differential module and the pressure module; wherein the heat supply to the working medium is accomplished by a heat exchange process with a high temperature auxiliary fluid. 1/2
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