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The toolset allows for the automatic synthesis of a unified temperature measurement and heat generation infrastructure combined with the necessary control structures and communication interfaces.
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Heat generation of sedimentary rocks is generally low.
A model of subsurface heat generation and transport helps elucidate the contribution of microbial and infrastructure heating to observed temperature increases at this site.
Internal heat generation is incorporated.
If heat generation exceeds the rate of loss, mechanisms to increase heat loss by evaporation occur.
If heat loss exceeds heat generation, metabolism increases to make up the loss.
Biogas with heat generation is also profitable.
These should be considerably less onerous than building new fossil fuel electricity generation infrastructure.
A reliable mesh generation infrastructure is designed based on software engineering principles.
Q o, heat generation constant.
Rate of heat generation or heat removal by reaction (kJ/s).
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