Non-condensables will cause which condition in a refrigeration system?

Study for the SkillCat EPA Universal Test. Prepare with flashcards and multiple choice questions, each question offers hints and explanations. Ace the exam!

Multiple Choice

Non-condensables will cause which condition in a refrigeration system?

Explanation:
Non-condensables in a refrigeration system hinder heat rejection in the condenser. Air or other non-condensable gases don’t condense with the refrigerant, so they accumulate in the condenser and form a layer that slows heat transfer. To push heat out despite that resistance, the condenser pressure rises (higher head pressure). The compressor must then discharge the refrigerant at a higher pressure, so the discharge pressure increases. While reduced efficiency can accompany this condition, the direct consequence described here is the higher discharge pressure. Choices suggesting a lower or unchanged discharge pressure don’t fit because the presence of non-condensables drives the system toward higher, not lower, discharge pressure.

Non-condensables in a refrigeration system hinder heat rejection in the condenser. Air or other non-condensable gases don’t condense with the refrigerant, so they accumulate in the condenser and form a layer that slows heat transfer. To push heat out despite that resistance, the condenser pressure rises (higher head pressure). The compressor must then discharge the refrigerant at a higher pressure, so the discharge pressure increases. While reduced efficiency can accompany this condition, the direct consequence described here is the higher discharge pressure. Choices suggesting a lower or unchanged discharge pressure don’t fit because the presence of non-condensables drives the system toward higher, not lower, discharge pressure.

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