Thus we connect — read-only
The value comes fromModbus TCP · Plant PLC · M-Bus (meters)of the installation —read, not controlled. Everything isin the housecalculated, nothing leaves the house. No obligation to disclose operating data.
Your own LLM for BHKW — 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 BHKW 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 main advantage of a BHKW compared to a heat pump?
A cogeneration unit, thanks to Kraft-Wärme-Kopplung (KWK), offers the possibility of producing electricity and heat simultaneously, which increases overall efficiency.
From what point is a BHKW relevant for thermal coupling?
A cogeneration unit is particularly relevant when high flow temperatures are required and simultaneous production of electricity is desired to reduce costs.
Why is a BHKW often chosen for high loads?
Since the BHKW relies directly on the combustion process, it provides a more stable heat input for high volumes compared to heat pumps.
How does KWK influence operating costs?
Thanks to self-produced electricity, grid-related costs decrease, while thermal energy is used directly for process heat.
What role does efficiency play in the case of a BHKW?
The overall efficiency (electrical + thermal) of a BHKW is significantly higher than that of a pure heat production technology.
How does flow temperature behave with a BHKW?
A BHKW can provide high flow temperatures stably, which is often a prerequisite for industrial processes.