DISTRIBUTED ENERGY SYSTEMS; NOTICE TO THE READER; CONTENTS; OPERATION PLAN OF A COMBINED FUEL CELLCOGENERATION USING GENETIC ALGORITHM; INTRODUCTION; FUEL CELL, SOLAR MODULES, AND GEO-THERMAL HEATPUMP COMBINED SYSTEM; Scheme of Combined System; Relational Expression; Energy Supply Path; ENERGY BALANCE AND OBJECTIVE FUNCTION; Objective Function of System; Multi-objective Optimization; ANALYSIS RESULTS; Results of Optimization; Equipment Capacity; Objective Function and Characteristics of Operation Plan; CONCLUSIONS; ROUTE PLANNING OF HEAT SUPPLY PIPINGIN A FUEL CELL ENERGY NETWORK.
INTRODUCTIONFUEL CELL NETWORK AND ENERGY BALANCE; Fuel Cell Network; Heat Release Model of Hot-Water Piping; Output Characteristics of the Fuel Cell; Energy Balance Equation; Urban Area Model and Energy Demand Pattern; ROUTE PLANNING METHOD OF PIPING; Route Planning Method of Piping Using the TSP (TravelingSalesman Problem [19]); Analysis Flow of the Search Program of the Piping Route; CASE STUDY; Program Check by Shortest Route Search; Power Generation Capacity of a Fuel Cell; Result of Route Planning; Piping Route Plan with a Solar Module; CONCLUSION.
LOAD LEVELING OF FUEL CELL SYSTEM BYOXYGEN CONCENTRATION CONTROL OFCATHODE GASINTRODUCTION; SYSTEM DESCRIPTION; System Structure; Fuel Cell Performance; System Operation; Water Electrolysis; Energy Balance; Analysis Method; CASE STUDY; Weather Conditions in Tokyo; Energy Demand Models; RESULTS AND DISCUSSION; Operation Planning and Fuel Cell Capacity Reduction Effect; Town Gas Consumption; Reformer and Auxiliary Machines Operation; CONCLUSION; INDEX.
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Distributed energy systems.
9781606925430
Distributed generation of electric power-- Mathematical models.