Thus we connect — read only
The value comes fromModbus TCP · Plant PLC · M-Bus (meters)from the installation —read, not controlled. Everything isin the housecalculated, nothing leaves the house. No obligation to disclose operating data.
Your own LLM for CHP — offline
Questions in plain language, answered byYour own installation data— local, no cloud. The AI runs internally; the installation remains yours.
Regulatory framework:VDI 4680 (KWK assessment) · AGFW FW 308 (heating network)
Associated causal chains
This component is part ofInstallation causal chains— from cause to effect (gas quality → engine → exhaust gas → heat → efficiency). The AI reads the entire chain, not just the individual value.
Link with the entire installation
A CHP unit is never alone: electricity, heat and gas are linked, and with PV and battery storage, it becomes a system. The AI calculates the entire installation.
Frequently Asked Questions
What is the ideal flow temperature in a CHP unit?
The typical flow temperature is in the range of 80 to 90 °C to ensure efficient heat transfer.
Why is the difference between flow and return important?
The temperature difference is the physical basis for calculating the delivered thermal power in kW.
At what point does a flow temperature that is too high endanger the installation?
A consistently too-high flow temperature stresses the customer's installation components and can lead to material degradation.
Why does utility decrease with a flow temperature that is too low?
A temperature that is too low reduces usable heat transfer, as the difference with the return is smaller.
How does the flow temperature influence the efficiency of the CHP unit?
The flow temperature, as well as the return, determines the thermal level and thus the share of heat in the overall efficiency.
Why must the flow temperature be monitored constantly?
Constant monitoring serves as an early indicator for malfunctions in the heat exchanger or control problems in the CHP system.