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The effect of borehole inclination on ground temperatures and the practical implications it has for the designs of ground-loop heat exchangers (GLHE) systems is studied.
Specifically, the qualitative designs of grounded theory, ethnography, phenomenology, and biography or illness narratives are examined.
Improving safety and optimum design of ground support requires good and reliable ground characterization.
Three design methods are usually used in the analysis and design of ground water control systems.
The rock-soil thermal conductivity is an important basis for the design of ground heat exchanger.
Thermal response tests (TRTs) are essential for reliable and accurate design of ground source heat pumps.
The PL map can provide useful information for the design of ground improvement at the site.
Alexander Garvin, a city planning commissioner who presided over the design of ground zero, is performing the same function for the Olympics bid.
The design of ground source heat pump systems requires values for the ground thermal conductivity and the borehole thermal resistance.
This change can have significant consequences for the design of ground support based on fibre reinforced shotcrete.
The conventional design of ground source heat pumps (GSHPs) is based on the peak heating and cooling loads.
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