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Sheet M-115
PPDPDD PACE

Thermalconcept

Skin-load vs internal-load buildings; HDD and CDD

One-line orientation

Building loads fall into two main groups: skin loads and internal loads. Skin loads come from the envelope and outdoor climate. Internal loads come from occupants, lights, and equipment. Degree days describe how demanding a climate is for heating or cooling over a season.

Key points

  • Skin-load-dominated building: the dominant source of heat gain or loss is the building envelope reacting to external climate — solar radiation, wind, and conduction through walls, roofs, and glazing. Examples: small residences, warehouses, buildings with high window-to-wall ratio, and any compact building where the skin area is large relative to floor area.
  • Internal-load-dominated building: heat generated inside the building — by occupants, lighting, computers, servers, and equipment — outweighs the envelope’s contribution. The HVAC system must remove this heat even in cold weather. Examples: open office floors, data centers, large retail stores, hospital surgery suites.
  • Heating Degree Days (HDD): measure how much (in degrees) and how long (in days) outdoor temperature falls below the base temperature of 65°F (≈18.3°C). Formula: HDD = 65°F − Average Daily Temperature (for each day where avg < 65°F; zero otherwise). Sum daily HDD over a year for annual HDD.
  • Cooling Degree Days (CDD): measure how much and how long outdoor temperature is above 65°F. Formula: CDD = Average Daily Temperature − 65°F (for each day where avg > 65°F).
  • What degree days mean: annual HDD and CDD are rough seasonal climate and energy indicators. Use them to compare climates and estimate seasonal energy or fuel use; they do not equal a building’s total energy demand. Size equipment from a peak design-load calculation instead.

Degree days: below 65°F heats, above 65°F cools

Daily gaps to the 65°F base sum into annual HDD / CDD; open dots mark the crossover points.

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Scroll horizontally to explore

Heating and cooling degree days read off a year-long temperature curve against the 65°F base A graph with the twelve months J through D on the x-axis and outdoor temperature in Fahrenheit on the y-axis, ticked at 30, 50, 65, and 85 degrees. A smooth average-temperature curve dips to a winter low near 30°F in January and rises to a summer peak near 85°F in July. A dashed horizontal line marks the fixed 65°F base. The curve crosses this base twice; each crossing is marked with a small open dot on the base line, dropping a hairline to the axis — these are the points where accrual flips. Where the curve is below 65°F, at both cold ends of the year, the area between the curve and the base is shaded ink-blue and labeled HDD (heating), and each cold lobe carries the formula HDD = 65°F minus average temperature. Where the curve is above 65°F, across the warm middle of the year, the area is shaded warm and labeled CDD (cooling), carrying the formula CDD = average temperature minus 65°F. 30°50°65°85°JFMAMJJASOND65°F baseHDDheatingHDD = 65°F − avg dailyHDDheatingHDD = 65°F − avg dailyCDDcoolingCDD = avg daily − 65°F
  • open dot = curve crosses the 65°F base; accrual flips
  • shaded area = Σ daily = annual HDD / CDD total

Confusions / comparison

Skin-load-dominatedInternal-load-dominated
Dominant heat source/sinkEnvelope (outdoor climate, solar)Occupants, lights, equipment
Typical building typesHouses, warehouses, small commercialOffices, data centers, large retail, hospitals
HVAC implicationSystem must track outdoor conditions closelyCooling needed year-round; less seasonal swing
High SHGC glazing benefitYes, in cold climate (south-facing passive solar)Less relevant — internal gains already supply heat
Envelope insulation priorityHighModerate (internal gains may dominate anyway)
MetricFormulaWhat countsAccumulates when
HDD65°F − Avg Daily Tempdegrees below 65°FOutdoor avg < 65°F
CDDAvg Daily Temp − 65°Fdegrees above 65°FOutdoor avg > 65°F
Annual HDDSum of daily HDD over 12 monthstotal heating demandClimate is cold
Annual CDDSum of daily CDD over 12 monthstotal cooling demandClimate is hot

→ Thermal: Solar geometry & SHGC (skin-load buildings most sensitive to SHGC choice) · Thermal mass (mass moderates temperature swings, reducing peak degree-day impact on the envelope) · HVAC: Balance temperature (the outdoor temperature where internal and solar gains equal building heat loss — related concept to the 65°F base) · Code: energy code (ASHRAE 90.1 climate zones based on HDD/CDD bands).

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