New York City has an indoor-first climate for Monstera deliciosa, with an outdoor climate-match score of 35/100. The score does not say whether a plant can live in your home. It compares the city’s outdoor normals with the climate envelope measured at quality-filtered records in the species’ native range, then separates that outdoor comparison from the care pressure on a potted indoor plant.
The useful answer is seasonal: the strongest fully suitable outdoor window is July–August. A broader, marginal window is July–September, but marginal months need day-by-day judgment and a protected, shaded position. Indoors, use the monthly calendar below to decide when to check the pot sooner or later. It is deliberately not a fixed watering schedule.
The direct climate answer for New York City
Cold is the largest mismatch in New York City. The practical consequence is a firm indoor season: a warm afternoon does not cancel repeated cold-night exposure, especially beside cold glass or on an exposed balcony. The city’s low-temperature signal reaches -9.2°C in the coldest part of the normal year, while the hot-temperature signal reaches 30.0°C. Those are outdoor climate values, not indoor room measurements.
The local pattern is not a generic season swap. In the 1991–2020 NASA POWER normal, December is the wettest month and February is the driest, while outdoor solar input peaks in June and bottoms out in December. For an indoor Monstera in New York City, those signals matter because pot drying can change even when your room temperature changes only a little.
The overall score is rounded to the nearest five. That is intentional: reanalysis grids, occurrence locations, a city’s microclimates, and the difference between outdoor weather and an actual room do not justify single-point precision.
Outdoor climate match: 35/100
0/100 — Cold-Night Compatibility. New York City is the clearest macroclimate constraint.
100/100 — Warm-Season Heat Compatibility. New York City sits mostly inside the occurrence-derived habitat envelope.
20/100 — Outdoor Solar-Climate Compatibility. New York City is the clearest macroclimate constraint.
55/100 — Precipitation And Humidity Compatibility. New York City departs materially from the habitat envelope.
0/100 — Seasonal-Rhythm Compatibility. New York City is the clearest macroclimate constraint.
The weighted score uses cold 30%, heat 20%, moisture 20%, light 20%, and seasonality 10%. Cold receives the largest weight because Monstera deliciosa is frost-sensitive and a single cold exposure can matter more than a modest mismatch in annual averages. “Light” here means outdoor solar climate, not the light at a particular windowsill.
Native climate versus New York City
The plant Climate DNA was built from 154 spatially thinned GBIF occurrence records within the POWO native range of southern Mexico to Guatemala. CHELSA 1981–2010 values were sampled at those coordinates, then summarized with robust percentiles so a small number of extreme records could not define the whole envelope. The city side uses the NASA POWER custom 1991–2020 climatology for a consistent long-term monthly comparison.
| Signal | Native occurrence envelope (p10–p90) | New York City normal |
|---|---|---|
| Coldest-month minimum | 8.2 to 18.6°C | -9.2°C low-temperature signal |
| Warmest-month maximum | 23.1 to 32.8°C | 30.0°C hot-temperature signal |
| Annual precipitation | 912 to 3408 mm | 1257 mm |
| Relative humidity | 57 to 69% | 80% |
| Outdoor solar climate | 16.9 to 20.8 MJ/m²/day | 14.1 MJ/m²/day |
These comparisons describe macroclimate. Monstera is a forest climber, so an open-sky solar value cannot be read as the amount of light its leaves receive below a canopy—or behind your glass.
Month-by-month Monstera care calendar
| Month | Mean temp | Colder-night signal | Humidity | VPD | Pot-check pressure | Outdoors | What to do |
|---|---|---|---|---|---|---|---|
| January | 1.1°C | -9.2°C | 82% | 0.12 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| February | 1.3°C | -8.4°C | 81% | 0.13 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| March | 4.1°C | -5.1°C | 81% | 0.15 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| April | 8.8°C | 0.8°C | 82% | 0.21 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| May | 14.1°C | 6.5°C | 83% | 0.27 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| June | 19.7°C | 11.8°C | 82% | 0.41 kPa | low | indoors | Growth and drying are slow; extend the observation interval instead of following a fixed watering day. |
| July | 23.5°C | 17.5°C | 79% | 0.62 kPa | moderate | suitable | A shaded outdoor stay is climate-compatible after gradual acclimation; keep checking soil moisture. |
| August | 23.4°C | 17.1°C | 77% | 0.65 kPa | moderate | suitable | A shaded outdoor stay is climate-compatible after gradual acclimation; keep checking soil moisture. |
| September | 20.2°C | 12.3°C | 77% | 0.55 kPa | moderate | marginal | Keep a steady indoor routine and adjust from soil moisture and new growth, not the calendar alone. |
| October | 14.6°C | 5.9°C | 77% | 0.38 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| November | 8.9°C | 0.2°C | 79% | 0.24 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
| December | 4.3°C | -4.8°C | 81% | 0.15 kPa | low | indoors | Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking. |
The low-temperature column uses NASA POWER’s monthly minimum-average climatology, not a forecast and not a room reading. The drying column is vapor-pressure deficit calculated from the monthly temperature and relative humidity. It compares atmospheric drying pressure between months but does not measure water leaving your specific pot.
How to use the watering-pressure signal
The pressure scale is relative within New York City. A high-pressure month means the local mix of temperature, humidity, and atmospheric drying suggests checking the substrate earlier than in a low-pressure month. It never means “water now.” Pot diameter, root density, substrate, indoor heating or air conditioning, and distance from the window can easily outweigh the outdoor monthly signal.
Use the same observation loop all year: feel or probe the root zone, note the pot’s weight, look for active growth, and compare how long drying took after the previous watering. If the mix is still moist, wait. If it is dry at the depth appropriate for the pot and the plant is actively using water, water thoroughly and let the excess drain.
The 12-month climate dossier for New York City
This section expands the table into month-to-month changes. Each comparison uses only the stored 1991–2020 city normal and the occurrence-derived plant envelope; it does not infer the conditions inside a particular room.
January in New York City: severe cold risk, low check pressure
New York City’s January profile pairs a 1.1°C mean with 82% humidity and 102 mm of modeled precipitation. From December to January, the mean changes -3.2°C, solar input changes +1.0 MJ/m²/day, and VPD changes -0.0 kPa. Its -9.2°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
February in New York City: severe cold risk, low check pressure
For February in New York City, the climate normal reads 1.3°C, 81% relative humidity, and 10.0 MJ/m²/day of solar input. From January to February, the mean changes +0.2°C, solar input changes +3.2 MJ/m²/day, and VPD changes +0.0 kPa. Its -8.4°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
March in New York City: severe cold risk, low check pressure
The New York City signal for March is defined by -5.1°C on the low side, 13.5°C on the high side, and 0.15 kPa VPD. From February to March, the mean changes +2.8°C, solar input changes +3.4 MJ/m²/day, and VPD changes +0.0 kPa. Its -5.1°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
April in New York City: severe cold risk, low check pressure
In New York City, April brings 101 mm modeled precipitation, a 82% humidity normal, and low pot-check pressure. From March to April, the mean changes +4.7°C, solar input changes +4.0 MJ/m²/day, and VPD changes +0.1 kPa. Its 0.8°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
May in New York City: high cold risk, low check pressure
May places New York City at 14.1°C mean temperature with a slow growth signal and indoors outdoor status. From April to May, the mean changes +5.3°C, solar input changes +2.2 MJ/m²/day, and VPD changes +0.1 kPa. Its 6.5°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
June in New York City: moderate cold risk, low check pressure
The practical June reading for New York City: 21.4 MJ/m²/day outdoors, 0.41 kPa VPD, and low relative check pressure. From May to June, the mean changes +5.6°C, solar input changes +1.8 MJ/m²/day, and VPD changes +0.1 kPa. Both temperature signals remain inside the broad p10–p90 native-record envelope. Action: Growth and drying are slow; extend the observation interval instead of following a fixed watering day.
July in New York City: low cold risk, moderate check pressure
New York City’s midyear July normal spans a 17.5°C low signal to a 30.0°C high signal, with 79% humidity. From June to July, the mean changes +3.8°C, solar input changes 0.0 MJ/m²/day, and VPD changes +0.2 kPa. Both temperature signals remain inside the broad p10–p90 native-record envelope. Action: A shaded outdoor stay is climate-compatible after gradual acclimation; keep checking soil moisture.
August in New York City: low cold risk, moderate check pressure
By August, New York City records 23.4°C mean temperature, 111 mm modeled precipitation, and a active macroclimate growth band. From July to August, the mean changes -0.1°C, solar input changes -2.5 MJ/m²/day, and VPD changes +0.0 kPa. Both temperature signals remain inside the broad p10–p90 native-record envelope. Action: A shaded outdoor stay is climate-compatible after gradual acclimation; keep checking soil moisture.
September in New York City: moderate cold risk, moderate check pressure
The late-season September combination in New York City is 77% humidity, 0.55 kPa VPD, and 15.3 MJ/m²/day solar input. From August to September, the mean changes -3.2°C, solar input changes -3.6 MJ/m²/day, and VPD changes -0.1 kPa. Both temperature signals remain inside the broad p10–p90 native-record envelope. Action: Keep a steady indoor routine and adjust from soil moisture and new growth, not the calendar alone.
October in New York City: high cold risk, low check pressure
For a New York City Monstera, October is classified indoors outdoors and low for relative pot-check pressure; the mean is 14.6°C. From September to October, the mean changes -5.6°C, solar input changes -4.3 MJ/m²/day, and VPD changes -0.2 kPa. Its 5.9°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
November in New York City: severe cold risk, low check pressure
November shifts New York City to a dormant-like growth signal, backed by 8.9°C mean temperature and 79% humidity. From October to November, the mean changes -5.7°C, solar input changes -3.3 MJ/m²/day, and VPD changes -0.1 kPa. Its 0.2°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
December in New York City: severe cold risk, low check pressure
Closing the climate year, December in New York City shows -4.8°C on the low side, 0.15 kPa VPD, and low check pressure. From November to December, the mean changes -4.6°C, solar input changes -1.9 MJ/m²/day, and VPD changes -0.1 kPa. Its -4.8°C low-temperature signal falls below the native-record p10 of 8.2°C. Action: Keep the plant indoors and away from cold glass or drafts; let the pot dry further before rechecking.
How New York City differs from the other nine cities
Within this ten-city cluster, New York City ranks #6 for overall outdoor match, #4 for cold severity, #9 for heat, #3 for annual precipitation, #5 for humidity, and #6 for solar input. These are descriptive ranks within this selected cluster, not claims about every U.S. city.
The nearest climate profile in the cluster is Chicago, with a normalized distance of 0.364; the most contrasting profile is Los Angeles at 1.746. The largest mean-temperature difference from Chicago appears in December (+4.1°C), while the largest VPD difference occurs in January (+0.1 kPa).
| Month | Mean temp vs Chicago | Humidity vs peer | Solar vs peer | VPD vs peer |
|---|---|---|---|---|
| January | +3.9°C | -5.0% | +0.9 MJ/m²/day | +0.1 kPa |
| February | +3.2°C | -3.0% | +1.2 MJ/m²/day | +0.1 kPa |
| March | +2.1°C | -1.0% | +0.6 MJ/m²/day | +0.0 kPa |
| April | +2.2°C | +1.0% | +0.8 MJ/m²/day | +0.0 kPa |
| May | +2.5°C | +1.0% | +0.2 MJ/m²/day | +0.0 kPa |
| June | +2.0°C | +1.0% | -0.4 MJ/m²/day | +0.0 kPa |
| July | +1.5°C | 0.0% | -0.5 MJ/m²/day | +0.1 kPa |
| August | +1.2°C | 0.0% | -0.2 MJ/m²/day | +0.0 kPa |
| September | +1.5°C | +2.0% | -0.3 MJ/m²/day | +0.0 kPa |
| October | +2.5°C | 0.0% | +0.3 MJ/m²/day | +0.1 kPa |
| November | +3.4°C | -1.0% | +0.9 MJ/m²/day | +0.1 kPa |
| December | +4.1°C | -5.0% | +0.7 MJ/m²/day | +0.1 kPa |
This nearest-neighbor table is useful when advice from another city looks tempting: it shows exactly which months and climate signals transfer reasonably and which do not.
The biggest mismatch and the first three adjustments
Cold is the largest mismatch in New York City. The practical consequence is a firm indoor season: a warm afternoon does not cancel repeated cold-night exposure, especially beside cold glass or on an exposed balcony. That mismatch is why the page keeps outdoor suitability separate from local care pressure: a poor outdoor cold match can coexist with a perfectly manageable indoor plant.
- Cold protection: Treat cold nights as the hard stop: move the plant in before the first marginal month, not after visible damage.
- Seasonal reset: Change the care rhythm when the growth band changes; do not carry a summer routine unchanged into the slow season.
- Light buffering: Translate outdoor radiation into indoor placement cautiously: use bright indirect light and acclimate before any outdoor exposure.
If you are moving a plant outside, acclimate it gradually in bright shade. Reverse the move before the first marginal cold month. A forecast always outranks a climate normal for a decision on a particular day.
Confidence and limits
The plant Climate DNA confidence is high (93/100). It reflects sample size, geographic coverage across 102 quarter-degree cells, and coordinate-precision reporting. The city side uses one consistent NASA POWER source and period for every page in this cluster, which improves comparison but cannot resolve neighborhood, elevation, coastal, building, or room-level differences.
This model does not claim a physiological survival threshold. GBIF occurrence locations show where records exist; CHELSA and NASA POWER describe modeled macroclimate; neither dataset observes your plant, pot, or window. Use the result as a prioritization aid and combine it with current forecasts and direct observation.
Methodology and sources
- Taxonomy: GBIF Species API record; accepted name Monstera deliciosa.
- Native distribution: Plants of the World Online; Mexico (Veracruz, Oaxaca, Chiapas) to Guatemala.
- Occurrences: GBIF occurrence search; bad coordinates, uncertainty over 10 km, non-native countries, cultivated/introduced status, duplicates, and licenses other than CC0/CC-BY were excluded.
- Plant climate: CHELSA-climatologies V2.1, 1981–2010, CC0-1.0.
- City climate: NASA POWER Climatology API, custom 1991–2020 climatology, service v2.9.7. NASA POWER referencing guide.
Continue your Monstera plan
Start with the complete Monstera deliciosa indoor care guide, browse the Monstera climate guides by city, then compare another city climate:
- Monstera care in Los Angeles
- Monstera care in San Francisco
- Monstera care in Seattle
- Monstera care in Chicago
Turn the climate signal into observations
Use KnowYourPlant to identify your plant, log what you see, and keep care notes for the conditions in your actual home.
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