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Hydronic Heating Systems Flashcards

7 cards from real HVAC practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

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  1. What is the primary purpose of a compression tank (expansion tank) in a closed hydronic system?

    Answer: To absorb the expansion of water as it heats up

    The compression tank absorbs the increased volume of water that occurs as it heats, preventing dangerous pressure spikes in the closed system.

  2. In a primary-secondary hydronic system, what is the purpose of the secondary loop?

    Answer: To allow zone control without affecting primary loop flow

    Secondary loops allow individual zones to operate at different flow rates and temperatures without disrupting the flow in the primary distribution loop.

  3. Which type of hydronic terminal unit uses a fan to distribute heat from the hot water coil to the room?

    Answer: Fan coil unit

    Fan coil units (FCUs) use an integral fan to force air across the hot water coil, providing faster heat distribution than passive convectors.

  4. What does the term 'delta T' refer to in hydronic system design?

    Answer: The difference between supply and return water temperatures

    Delta T (ΔT) is the temperature difference between the supply and return water in the system, typically 20°F in standard hydronic designs.

  5. A hydronic system is experiencing 'ghost flow' through a zone that is supposed to be off. What is the most likely cause?

    Answer: Failed zone valve not fully closing

    Ghost flow occurs when a zone valve fails to close completely, allowing hot water to bypass the zone thermostat control and heat an unintended area.

  6. What is the recommended minimum water velocity in hydronic piping to prevent air pockets from forming?

    Answer: 1.5 ft/sec

    A minimum velocity of about 1.5 ft/sec is needed to carry entrained air bubbles along to the air separator rather than allowing them to collect in high points.

  7. Which piping arrangement in a hydronic system ensures equal flow and pressure drop through all terminal units?

    Answer: Reverse-return system

    In a reverse-return system, the total length of supply plus return pipe is equal for every terminal unit, resulting in balanced flow without extensive manual balancing.