At PORTLAND INTL JETPORT, ME US, the lowest monthly mean temperature normal is 24.0°F in January, and the highest is 70.4°F in July. These are 1991–2020 station averages, not daily extremes or conditions measured at your Portland building. [1][2]
Portland, ME: Maine reporting and heating records.
An HVAC planning brief for Portland, ME teams working on Maine reporting and heating records, with a cited seasonal reference, a practical evidence checklist, and clear limits on what is known.
For Portland, Maine, start the reporting inquiry with Maine and Portland authorities, not guidance for Portland, Oregon. Keep the heating-equipment register and meter completeness record together so administrative energy data and a technical operating review describe the same property.
Jurisdiction: Portland, ME. The station below supplies regional climate context only; parcel authority, utility territory, and local-policy applicability remain to be confirmed.
Local-policy review pending. This public planning brief includes sourced context and a usable checklist, but does not establish local requirements. Confirm current rules with the responsible authority before acting.
A seasonal reference.
Not a sizing rule.
Use this record to frame operating questions for Portland, ME, not to select equipment or predict the next season. It describes one regional station, not every neighborhood or building.
PORTLAND INTL JETPORT, ME US
Station USW00014764
43.6497°, -70.3003°
Period: 1991–2020. Retrieved . Mean temperature is in °F; HDD65 and CDD65 are monthly heating and cooling degree-day normals using a 65°F base.
Inspect the station source [1]| Month | Mean °F | HDD65 | CDD65 |
|---|---|---|---|
| Jan | 24.0, Standard normal, 30 years used | 1270.9, Standard normal, 30 years used | 0.0, Standard normal, 30 years used |
| Feb | 26.2, Standard normal, 30 years used | 1087.8, Standard normal, 30 years used | 0.0, Standard normal, 30 years used |
| Mar | 34.1, Standard normal, 30 years used | 956.4, Standard normal, 30 years used | 0.0, Standard normal, 30 years used |
| Apr | 44.6, Standard normal, 30 years used | 612.6, Standard normal, 30 years used | 0.6, Standard normal, 30 years used |
| May | 54.9, Standard normal, 30 years used | 324.8, Standard normal, 30 years used | 10.1, Standard normal, 30 years used |
| Jun | 64.3, Standard normal, 30 years used | 88.8, Standard normal, 30 years used | 67.8, Standard normal, 30 years used |
| Jul | 70.4, Standard normal, 30 years used | 10.2, Standard normal, 30 years used | 176.0, Standard normal, 30 years used |
| Aug | 69.2, Standard normal, 30 years used | 16.4, Standard normal, 30 years used | 146.5, Standard normal, 30 years used |
| Sep | 61.6, Standard normal, 30 years used | 145.4, Standard normal, 30 years used | 43.4, Standard normal, 30 years used |
| Oct | 50.3, Standard normal, 30 years used | 459.2, Standard normal, 30 years used | 2.0, Standard normal, 30 years used |
| Nov | 40.0, Standard normal, 30 years used | 748.5, Standard normal, 30 years used | 0.0, Standard normal, 30 years used |
| Dec | 30.3, Standard normal, 30 years used | 1074.1, Standard normal, 30 years used | 0.0, Standard normal, 30 years used |
Source completeness: Standard (S); 30–30 years used across the displayed values. NOAA may fill missing months from nearby stations according to the stated quality class. Read the field definitions [3].
We reproduce the published monthly fields directly. No building load, annual energy consumption, forecast, humidity measurement, or local-policy conclusion is calculated from this table.
What the available evidence supports.
Source statements, not a determination about your building. Regional climate and national methods are identified separately from local-policy evidence.
The station’s highest monthly heating degree-day normal is 1270.9 in January; its highest cooling degree-day normal is 176.0 in July. Both use a 65°F base. Degree days describe outdoor temperature departures, not equipment capacity, energy cost, or indoor comfort. [1][3]
EPA describes benchmarking as comparing a building’s energy use with past consumption, similar buildings, or a reference performance level. This building-level context is different from identifying a failed asset or confirming a city reporting requirement. [4]
Turn context into an evidence record.
Our planning synthesis. These steps are not additional city requirements.
Reconcile the HVAC asset and meter record- Define one decision for Portland, ME: Maine reporting and heating records. Record the actual property address, business impact, decision owner, and what evidence would change the next action.
- Map every electric and fuel meter to the building, shared plant, and tenant area it serves. Record missing periods and the person authorized to request them.
- Collect the property identifier, use, floor area, current program document, and written applicability response. A utility-data export is not a compliance determination.
- Assign the submission owner separately from the technical reviewer. Retain a reporting receipt without presenting it as proof of equipment efficiency.
- Use the January and July station reference periods to frame seasonal questions. Compare actual utility periods and on-site records; do not substitute the normals table for measured site weather or design conditions.
- Deliver this working record: A Maine-specific building and meter record, heating service exceptions, and written answers to local reporting questions. Assign a named owner and a due date to every unresolved item; leave unsupported conclusions explicitly open.
A Maine-specific building and meter record, heating service exceptions, and written answers to local reporting questions.
Minimum fields: asset or property ID, observation, dated source or attachment, open question, accountable person, next decision, and due date. This is a suggested working record—not a city-issued form.
Questions before the next decision.
What can the Portland climate table tell an HVAC operator?
It shows the seasonal pattern at PORTLAND INTL JETPORT, ME US, using NOAA’s 1991–2020 normals. It can help choose contrasting periods for an operating review. It cannot establish current weather, extremes, humidity, indoor conditions, a building load, or the correct equipment size. Use site measurements and qualified design work for those decisions. [1][2]
What evidence should the Portland team prepare first?
A Maine-specific building and meter record, heating service exceptions, and written answers to local reporting questions. This is our recommended planning artifact, not a municipal form. Pair it with the bills and basic building information needed for a building-level benchmark, then identify the technical and authority questions that the benchmark cannot answer. [4]
Does this brief establish Portland, ME reporting rules or incentive eligibility?
No. The Portland jetport station supplies regional climate context; no Oregon policy, local threshold, or engineering design condition is implied. The sources here support regional climate context and national benchmarking methods only. Obtain the current local or state document and an account- or property-specific response before acting on a threshold, deadline, exemption, permit, or incentive. Local-policy review remains pending; this public brief is planning guidance, not a determination of applicability. [1][4]
Inspect the sources.
Reference content checked 2026-10-06. Sources support only the stated scope; availability does not prove accuracy or site applicability.
No source below is presented as a reviewed municipal requirement, utility approval, or site inspection.
- PORTLAND INTL JETPORT, ME US — 1991–2020 monthly normals (CSV) NOAA National Centers for Environmental Information · regional climate source
The 12 monthly mean temperatures and base-65°F heating and cooling degree-day normals for station USW00014764. This is a station reference, not a building measurement or local-policy source.
Content checked 2026-10-06 - U.S. Climate Normals: meaning, period, and limitations NOAA National Centers for Environmental Information · national source
The 30-year normal period, station-based methodology, and distinction between typical conditions and a forecast. Does not establish equipment sizing or municipal requirements.
Content checked 2026-10-06 - Normals CSV field definitions and quality flags NOAA National Centers for Environmental Information · national source
MLY-TAVG-NORMAL, base-65°F MLY-HTDD-NORMAL and MLY-CLDD-NORMAL, data-completeness flags, and years used. Values are read directly, not divided by ten.
Content checked 2026-10-06 - Benchmark your building with Portfolio Manager U.S. Environmental Protection Agency · ENERGY STAR · national source
Benchmarking compares building energy use with past consumption, similar buildings, or a reference. The tool’s national capabilities do not establish a local reporting obligation or diagnose an HVAC asset.
Content checked 2026-10-06
Bring the local constraint.
Request an operating-readiness conversation for Portland. We assess fit first; a city guide is not a promise of on-site delivery.
HVAC in focus.
A guide for Portland, ME teams.
See the equipment, workflows, and records behind an operating-readiness assessment. Use these examples to ask better questions about your own building.
AI-generated educational illustrations shared across our city guides. These are not photographs of local buildings, Slyyyde projects, clients, or staff. Equipment shown may not be present at your site; illustrations are not installation instructions.

Rooftop equipment
Match each rooftop unit to an asset ID, nameplate record, service history, and the spaces it serves before planning repair or replacement.

Commercial heat pumps
A heat-pump proposal needs building-load information, electrical capacity, operating-temperature requirements, and a qualified design review—not just an equipment quote.

Central cooling plants
Review plant schedules, water-temperature trends, alarms, and service records together. A single reading does not establish seasonal performance or savings.

Air handling & filtration
Document the specified filters, replacement dates, access needs, and pressure readings where available. Filter appearance alone is not an indoor-air-quality assessment.

Ventilation & distribution
Connect comfort complaints to zones, occupancy schedules, and available airflow records. Have qualified professionals evaluate ventilation and distribution changes.

Building automation
Collect the point list, sequences, alarm history, and trend exports. Establish who can change settings and how those changes are recorded and reviewed.

Electrical readiness
Route capacity, protection, and utility-service questions to qualified electrical professionals. A photograph cannot confirm spare capacity or code compliance.

Hydronic circulation
Keep pump, valve, and loop records connected to the equipment they support. Document operating readings and repeated faults before choosing an intervention.

Field measurements
A useful test record identifies the instrument, calibration status, location, conditions, and method. Compare results with project criteria through qualified specialists.

Work-order closeout
Close each work order with the asset, symptom, diagnosis, action, verification, and unresolved follow-up. Keep actual site photos separate from illustrative material.
Define one decision for Portland, ME: Maine reporting and heating records. Record the actual property address, business impact, decision owner, and what evidence would change the next action.
Use the local sources on this page to confirm applicable requirements. Bring actual equipment photos and records to an assessment; the gallery is a conversation guide, not a site survey.
See what an assessment covers