Literature DB >> 28785125

Determination of Vertical Borehole and Geological Formation Properties using the Crossed Contour Method.

Brian P Leyde1, Sanford A Klein1, Gregory F Nellis1, Harrison Skye2.   

Abstract

This paper presents a new method called the Crossed Contour Method for determining the effective properties (borehole radius and ground thermal conductivity) of a vertical ground-coupled heat exchanger. The borehole radius is used as a proxy for the overall borehole thermal resistance. The method has been applied to both simulated and experimental borehole Thermal Response Test (TRT) data using the Duct Storage vertical ground heat exchanger model implemented in the TRansient SYstems Simulation software (TRNSYS). The Crossed Contour Method generates a parametric grid of simulated TRT data for different combinations of borehole radius and ground thermal conductivity in a series of time windows. The error between the average of the simulated and experimental bore field inlet and outlet temperatures is calculated for each set of borehole properties within each time window. Using these data, contours of the minimum error are constructed in the parameter space of borehole radius and ground thermal conductivity. When all of the minimum error contours for each time window are superimposed, the point where the contours cross (intersect) identifies the effective borehole properties for the model that most closely represents the experimental data in every time window and thus over the entire length of the experimental data set. The computed borehole properties are compared with results from existing model inversion methods including the Ground Property Measurement (GPM) software developed by Oak Ridge National Laboratory, and the Line Source Model.

Entities:  

Keywords:  Geothermal; Ground Loop Heat Exchangers; Ground Property Measurement; Ground Thermal Conductivity; Parameter Estimation; TRNSYS Optimization; Thermal Response Test

Year:  2017        PMID: 28785125      PMCID: PMC5544020          DOI: 10.1016/j.geothermics.2016.12.007

Source DB:  PubMed          Journal:  Geothermics        ISSN: 0375-6505            Impact factor:   4.284


  2 in total

1.  Selecting HVAC Systems to Achieve Comfortable and Cost-effective Residential Net-Zero Energy Buildings.

Authors:  Wei Wu; Harrison M Skye; Piotr A Domanski
Journal:  Appl Energy       Date:  2017-12-22       Impact factor: 9.746

2.  Net-zero Nation: HVAC and PV Systems for Residential Net-Zero Energy Buildings across the United States.

Authors:  Wei Wu; Harrison M Skye
Journal:  Energy Convers Manag       Date:  2018       Impact factor: 9.709

  2 in total

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