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A computationally efficient hybrid time step methodology for simulation of ground heat exchangers
Authors:James R Cullin  Jeffrey D Spitler
Affiliation:Department of Mechanical Engineering, Oklahoma State University, Stillwater, OK, USA
Abstract:Ground heat exchanger design tools have become increasingly important for the sizing of energy-efficient heating and cooling systems. Most such heat exchanger design tools incorporate a simulation that uses both long and short timesteps (a “hybrid timestep” procedure). Current tools typically expect engineers to exercise judgment to determine the magnitude and duration of the shorter timestep. This paper proposes an accurate and efficient methodology for developing this hybrid timestep formulation, which is validated against hourly simulations for a set of three building types. Overall, the method performs well for design purposes, with the error in ground heat exchanger sizing averaging less than 1% and always less than 8%.
Keywords:Geothermal  Ground source heat pump  Ground-coupled heat pump  Ground heat exchanger  Borehole heat exchanger  Hybrid time step  Design tool
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