The capacity is present; the work is regeneration.
80th percentile for like land · Frontier tier · 30 conservation priority
Water
100
Soil
88
Ecology
30
Climate
53
Pressure
87
9 of 13 sources answered · higher is better on every pillar; pressure reads calm · silent: sentinel2_ndvi, sentinel1_rtc, worldbank_wgi…
The reading in full
This 100-hectare parcel near Varzo, Verbano-Cusio-Ossola, Piedmont is land with sound foundations and clear regenerative upside. It scores 72 out of 100 on the Dear Wise Earth Land Score.
The risks that most shape a decision here: This area is highly exposed to projected climate change by 2050. Large shifts in temperature and rainfall can change what the land can support, so any plan should be built around the projected conditions, not current ones.
Where the upside lies: The soil is rich in organic carbon, a strong base for farming and restoration. Carbon-rich soil holds water and nutrients well, supports higher yields and faster regrowth, and may qualify for soil-carbon programs. A watercourse runs through the parcel. On-site water supports irrigation, livestock, and habitat and can lower water-supply costs — though it may carry buffer or setback rules worth checking.
The wider readings: Rainfall is moderate. Water is adequate for many uses, but storage through the dry season improves reliability. The parcel sits at high elevation. Higher ground is cooler, which changes crop suitability and can ease heat stress, but may add access and frost considerations. Biodiversity records are moderate. There is a reasonable but incomplete picture of local wildlife; a ground survey would sharpen any conservation or regulatory assessment. The parcel is relatively remote. Distance from roads and towns means lower encroachment pressure and more privacy, but higher transport and operating costs.
What the land is telling us: Read across the record, the land reads as stable: the canopy history shows no meaningful loss in a generation and the water signal is holding, which means the work is to build on a sound base rather than to reverse a decline. Of the land's core processes, the water cycle reads as adequate to abundant, so the question is less supply than how well the land captures and holds what falls. What orbit cannot see is what happens below the surface — soil biology, structure, and the carbon held in the ground — so treat those as the first things to confirm underfoot. Taken together, this is land with sound foundations and clear regenerative upside. Its clearest strength to build from is that the soil is rich in organic carbon, a strong base for farming and restoration.
The ground and its cover
500 m
Terrain · shaded relief · AWS Terrain Tiles
500 m
Land cover · ESA WorldCover 2021 · ESA / Copernicus
The verdict, the five pillar readings, how much of the land was read, and the headline figures.
The verdict
72out of 100 · Land ScoreRestore
The capacity is present; the work is regeneration.
Varzo, Verbano-Cusio-Ossola, Piedmont
ReclaimCultivateRestoreAnchor
80th percentile for like land · Frontier tier · 30 conservation priority
Five readings
Water
100strong
Soil
88strong
Ecology
30watch
Climate
53fair
Pressure
87strong
Weakest: Ecology
All five read on one axis: higher is better. Pressure scores calm, so a high number means little human pressure on this land.
Standing
80thpercentile
all readings worldwide · against 100 readings
Coverage
100%
weight read
9 of 13 layers answered
Every pillar read from live data.
Silent: Sentinel-2, the radar, the governance record +1.
Where the capital goes
30/ 100 priority
Frontierhospitality fit 65
Best-fit model
Upper-watershed research station
46 / 100
Fit from published rules over the indicators.
The land in numbers
Area
100ha
Elevation
1,774m
1,720–1,904 m
Slope
9.1°
Buildable bench
not read
Forest cover
37%
Canopy height
not read
Rainfall
1,997mm/yr
+28% over 20 yr
Warming to 2050
+1.5°C
rain -15%
Soil carbon
56.2g/kg
pH 6.0
Nearest road
4.7km
Species records
127records
GBIF, the global species archive
Headline figures. The Why tab carries each reading in full, with its source and its date. “Not read” means the source had nothing for this parcel: a gap is named, never filled with a guess.
How this land works
About 1,997 mm of rain falls here in a year. 37% of the parcel is under tree cover, and the ground slopes 9.1° on average, enough to move water without tearing soil where roots hold it. 350 mapped watercourses cross the land (Steinubach, Rio La Balma). The nearest road is 4.7 km off, which is the pressure the edge lives with. By 2050 the models expect +1.5 °C and -15% rain, so every flow above runs a little differently than it does today.
Regenerating — almost no tree cover lost since 2000; rainfall up 28% over twenty years.
To help: plant along the watercourses and the ridge: canopy there returns the most water to the rest.
The score is the footnote. What matters is the pattern above it: what arrives, what the ground does with it, what leaves, and which way that is moving.
This place
100 hectares at Varzo of rolling land around 1,774 m. The ground reads 37% under canopy. Water shapes it — 1,997 mm of rain a year, 350 traced watercourses.
Its vocationresearch
Guard the headwaters; study what they hold. At 1,774 m with 37% tree cover, this reads as intact montane headwater forest — high-value habitat whose biodiversity and water function justify guarding it and studying what it holds.
1,774 m elevation37% forest9.1° slope1,997 mm rain/yrFrontier tier — outside the mapped network
Its trajectoryholding— the canopy record shows no meaningful loss in a generation.
This is an outsider's reading, assembled from instruments and public records. It is where understanding begins, not where it ends — the land, its neighbours, and the people who know it hold the rest.
The parcel from orbit
Finding the latest clear satellite pass…
The land, in context
Reading the land's record…
Relationships
A parcel is a node in living systems, not an island. Each line below is derived from this reading itself.
Each line is tagged with how it is known: observed, measured from satellite or map data · derived, reasoned from other readings on this page.
observed
This parcel is crossed by Steinubach
observed
This parcel is within reach of Rio La Balma
derived
This parcel is read against all readings worldwidep80 of 100 readings
The threads
Where the readings connect. Each thread follows one chain of cause and consequence across the instruments, and ends in what it means for what you do.
Each line is tagged with how it is known: recorded, from the historical archive · observed, measured from satellite or map data · derived, reasoned from other readings on this page · estimated, from a model, not a measurement.
The forest here has held for a generation.
recordedThis canopy has held: 15% cover in 2000, 0% lost since, none of it recent.
What to doThe work here is keeping, not fixing — and the first walk should confirm the stand is as intact up close as it reads from orbit.
Bears on the land's living value · high confidence
Independent instruments agree: water stands on this land.
observedA watercourse crosses the parcel itself.
observedAnd the rain record has risen 27.7% in twenty years.
derived2 separate signals point the same way — this is not one sensor's opinion.
What to doSite anything permanent off the wet ground, and walk the parcel in the rainy season before believing any dry-season visit.
Bears on where anything gets built · high confidence
More water is arriving — and arriving harder.
observedThe twenty-year rain record moved +27.7% — this is a place whose water is changing, not holding.
estimatedThe dry spells are lengthening at the same time (~17 → ~21 days) — more rain is arriving in stronger pulses with longer gaps, not as a gentler year.
observedOn 9.1° average slope, pulsed rain becomes runoff energy — erosion and flash flow, not just supply.
derivedNote the disagreement: the observed archive moved +27.7%, while the 2050 model says -15%. Neither cancels the other — the archive is what happened, the model is one projection. Design for the envelope: drainage for the wet record, storage for the dry projection.
What to doKeep or restore cover on the slopes and size drainage for pulses, not averages; verify culverts and crossings in the wet season.
Bears on this land and the people downstream · medium confidence
Strong land, standing on its own.
derivedThe Land Score reads 72 against a conservation priority of 30.
derivedIts value is intrinsic rather than positional — the network does not depend on it, which frees what it can be.
What to doPlans here answer to the land itself, not to a network obligation.
Bears on what a plan owes the landscape · medium confidence
For its kind of land, its ecology is unusually weak.
derivedAgainst 100 readings of like land (all readings worldwide), this parcel's ecology ranks in the bottom 17%.
derivedAn unusual weakness is rarely bad luck — something specific happened or is happening here that its peers escaped.
What to doMake ecology the first diligence question on the ground: find the cause before pricing the land.
Bears on what this land is, relative to its kind · medium confidence
Height is this land's climate insurance.
observedAt 1,774 m, today's mean sits at 3°C.
estimatedThe +1.5°C projected by 2050 arrives on that cool baseline — roughly 0 hot days a year here while lowland sites cross heat thresholds this parcel never reaches.
derivedAs the lowlands warm, land that stays temperate does double work: livable for people, refuge for species moving uphill.
What to doTreat elevation as an appreciating part of the asset — and design for the species arriving from below, not only the ones here now.
Bears on the decades ahead · medium confidence
The loops that govern it
Regeneration is not a feature added to land; it is a loop changing direction. These are the ones the readings can see, which way each is running, and where a hand changes it.
Forest and water
canopy → cloud and rain held → streams and soil moisture → canopy
running toward regeneration
37% tree cover on 1,997 mm of rain; 0% of the tree cover lost since 2000.
Plant along the watercourses and the ridge: canopy there returns the most water to the rest.
Open ground and soil
bare or grazed ground → compaction → runoff → thinner soil
holding
63% open ground on a 9.1° average slope.
Keep the ground covered through the dry season; rested pasture and cover crops turn this loop around on gentle slopes.
The edge and the road
access → clearing at the edge → more edge → more access
holding
road 4.7 km; 0% tree cover lost since 2000.
Distance is doing the work here; keep it, and do not build the road that would end it.
Reading the place
This 100-hectare parcel near Varzo, Verbano-Cusio-Ossola, Piedmont is land with sound foundations and clear regenerative upside, scoring 72 out of 100. The reading that most shapes the work here is that this area is highly exposed to projected climate change by 2050. Its main strength is that the soil is rich in organic carbon, a strong base for farming and restoration. The first move: design to the 2050 climate projections rather than today's conditions.
Riskmedium confidence
This area is highly exposed to projected climate change by 2050.
Large shifts in temperature and rainfall can change what the land can support, so any plan should be built around the projected conditions, not current ones.
Projected change by 2050: +1.5 °C mean temperature, -15% rainfall. Exposure rated High.
Opportunitymedium confidence
The soil is rich in organic carbon, a strong base for farming and restoration.
Carbon-rich soil holds water and nutrients well, supports higher yields and faster regrowth, and may qualify for soil-carbon programs.
56.2 g/kg soil organic carbon in the top 30 cm, loam texture, pH 6 (ISRIC SoilGrids).
Opportunityhigh confidence
A watercourse runs through the parcel.
On-site water supports irrigation, livestock, and habitat and can lower water-supply costs — though it may carry buffer or setback rules worth checking.
A mapped river or stream crosses the parcel (Steinubach).
Waterhigh confidence
Rainfall is moderate.
Water is adequate for many uses, but storage through the dry season improves reliability.
1,997 mm of rain per year. A watercourse crosses the parcel. The archive's 20-year trend reads about +28% — a swing that size deserves verification against local records before it informs any plan.
Terrainhigh confidence
The parcel sits at high elevation.
Higher ground is cooler, which changes crop suitability and can ease heat stress, but may add access and frost considerations.
Mean elevation 1,774 m, mean slope 9°, 184 m of relief.
Biodiversitymedium confidence
Biodiversity records are moderate.
There is a reasonable but incomplete picture of local wildlife; a ground survey would sharpen any conservation or regulatory assessment.
127 biodiversity records nearby, including Lyrurus tetrix and Alectoris graeca (GBIF, the global species-record archive).
Accesshigh confidence
The parcel is relatively remote.
Distance from roads and towns means lower encroachment pressure and more privacy, but higher transport and operating costs.
About 4.68 km to the nearest road.
Confidence reflects the data behind each reading: high when clear passes or strong sources agree, medium on a partial or single-source signal, low where the data is sparse or indirect. A low-confidence reading usually needs one more clear pass, or a check on the ground.
What the land is telling us
Read across the record, the land reads as stable: the canopy history shows no meaningful loss in a generation and the water signal is holding, which means the work is to build on a sound base rather than to reverse a decline.
Of the land's core processes, the water cycle reads as adequate to abundant, so the question is less supply than how well the land captures and holds what falls. What orbit cannot see is what happens below the surface — soil biology, structure, and the carbon held in the ground — so treat those as the first things to confirm underfoot.
Taken together, this is land with sound foundations and clear regenerative upside. Its clearest strength to build from is that the soil is rich in organic carbon, a strong base for farming and restoration.
Where the capital goes · corridor & deployment
30Conservation priority
FrontierStepping stone
Standalone conservation value, outside the mapped network.
standalone value, outside the mapped network
Two lenses, two numbers: the Land Score reads this land's own body; conservation priority reads its position in the network. When they disagree, the gap itself is the finding.
This reads as a partial patch that extends the network's reach, scoring 30 out of 100 for conservation priority. It carries standalone value outside the mapped network — worth holding on its own terms. A small, low-footprint operation (fit 65/100) could fund the work from the already-worked ground.
65/100
Hospitality fit
The funding layer: a small, low-footprint operation sited on the already-worked ground, sized to carry the restoration — never spending the habitat it depends on.
Conservationmedium confidence
This reads as a partial patch — enhancing it extends the network's reach.
A partly-forested parcel works as a stepping stone between the standing habitat around it: thickening its cover and connecting it to the neighbours widens the habitat that species can actually move through. No declared corridor is mapped here — the network in question is the nearby forest itself.
37% tree cover.
Hospitalitymedium confidence
A small hospitality operation could carry the conservation here.
In the regenerative model the lodging is a means, not the end: a low-footprint operation sited on the already-worked ground earns the revenue that funds the restoration and stewardship, while the core is left to recover. Kept small, it also gives the corridor local guardians with a reason to hold it.
Hospitality fit 65/100, drawing on water on site. Site any building on the already-worked ground, not the habitat.
Capital moves
01
Tie up the land before restoring it — purchase or an easement that holds through a sale.
Before committing
Restoration is a multi-year investment; without secure tenure the connectivity it builds can be undone by the next owner.
Confirm on the ground · Trace the title and cadastral record, and check what conservation-finance the jurisdiction offers before committing.
02
Thicken cover along the parcel's edges and watercourses to widen what species can move through.
First year
As a stepping stone or buffer, the parcel's contribution is its edges and riparian strips — the parts that link to the habitat next door.
Confirm on the ground · With an ecologist, identify the connecting strips worth planting first; confirm which watercourses cross the land at the end of the dry season.
03
Site a small, low-footprint hospitality operation on the already-worked ground to fund the stewardship.
Once the land is secured
A modest operation on the already-worked ground earns the revenue that pays for the restoration and the guardians, without spending the habitat it depends on.
Confirm on the ground · Model the operation at a size the land can carry, keep it off the habitat, and confirm the zoning and any sustainable-tourism certification locally.
04
Set a wildlife baseline and re-read it — camera traps on the parcel's connecting edges.
Ongoing
Funders and partners judge conservation land by whether wildlife actually uses it; a repeatable baseline is what turns the thesis into evidence and steers the next round of capital.
Confirm on the ground · Run camera traps and species counts on a fixed schedule and track movement between the parcel and the habitat beside it.
The deployment reading is a screening lens layered on the Land Score — it points capital at the land where it builds the most connectivity, and each move is paired with the ground-truth step that confirms it.
How it compares
80thpercentile · all readings worldwide
Ranked against 100 readings · all readings so far
Stronger land than 80% of all 100 readings logged so far. Soil is its strongest signal here (88th percentile), ecology its weakest (17th).
Percentile by reading · higher is better land
Water
77th
Soil
88th
Ecology
17th
Climate
51st
Low pressure
81st
Percentiles compare this reading against the growing corpus of public TERRA readings in like land — not all land on Earth. They sharpen as the wall grows.
The physical frame
Climate, water, soil, and shape — what the land is made of and what moves across it.
Climate · to 2050
Annual rainfall, 2004–2024 · mm
3.0°C
Mean temp
+1.5°C
2050 Δ temp
-15%
2050 Δ rain
Exposure · High
2050 sits within a single planning horizon — about 24 years out. The models expect seasons here about 1.5°C warmer than today's, with 15% less rain. Expect is the honest verb: this is the middle of a range of futures, not a certainty — so design to the range, not to today.
Water
1,997mm/yr
Rainfall
+27.7%
20-yr trend
On site
To watercourse
Steinubach · Rio La Balma · Rio Mottiscia · Rio delle Streghe
Soil · 0–30 cm
56.2g/kg
Org. carbon
6.0
pH
43%
Sand
20%
Clay
Loam
Terrain & cover
1,774m
Elevation
9.1°
Mean slope
37%
Forest
0%
Built
Grassland 62%Tree cover 37%Bare / sparse 1%
The living surface
What grows here, what is being lost, and what presses on it.
The rain row is one year alone — the Water panel's 1,997 mm is the long mean, and with the record up 28% in twenty years, recent years sit above it by design.
2050
Temperature shift
+1.5 °C
Rainfall shift
-15 %
Hot days (≥32 °C) / yr
0
Longest dry spell
21 days (+4)
Exposure
High — a hard projected shift — plan around it
Resilience reading
53 / 100
The resilience reading is the climate pillar from the five dials above — one number, shown here beside the horizon it scores.
The headline projection is one model family (CMIP6 · MPI-ESM1-2-XR via Open-Meteo). The 2045–2049 window stands in for 2050, and expect is the honest word. Intermediate horizons (2030 · 2040) and 2100 are not shown because the engine has not read them — TERRA does not interpolate between measurements.
Best-fit regenerative model
Upper-watershed research station
46 / 100 fit
Guard the headwaters; study what they hold.
At 1,774 m with 37% tree cover, this reads as intact montane headwater forest — high-value habitat whose biodiversity and water function justify guarding it and studying what it holds.
Intact montane forest at the top of a watershed, rich enough to justify a small research-and-education presence that funds protection of the water tower below.
1,774 m elevation37% forest9.1° slope1,997 mm rain/yrriver on site
A published, rules-based suggestion read from the parcel's own indicators — forest, water, slope, access, and its place in the network. It names the shape of project the land is already set up to carry; confirm it against tenure, soils, and what you know from the ground. These fit numbers rank whole project models against each other; the deployment lens's hospitality fit (65/100) is a different scale that asks only whether a small lodge could fund the stewardship here — the two need not match.
What to do
01
Design to the 2050 climate projections rather than today's conditions.
First year
The land is strongly exposed to projected change, so species, water storage, and infrastructure should be chosen for the conditions ahead.
Confirm on the ground · Cross-check the projections against the memory of long-time residents on how the seasons have already shifted here.
02
Confirm tenure and boundaries against the legal record before relying on this reading.
Before committing
The satellite record cannot see title, easements, or where the legal boundary actually runs — the things that govern what you can do here.
Confirm on the ground · Pull the title and cadastral record, and walk the boundary against it on the ground.
03
Walk the land to scope the regenerative work before committing capital.
First visit
The foundations are present and the upside is real, but sequencing the work well is what realises it.
Confirm on the ground · Read the water, soil, and cover on the ground, then plan the work from the most permanent layer down.
Questions to sit with
The soil is a real asset here — what use would build it further rather than spend it down?
If the seasons here shift as the models expect, which of your intentions for the land still hold — and which need rethinking now?
Are you here to hold this land as it is, to work it, or to help it change — and does the reading above serve that intention?
If the work succeeds, what do the water, the canopy, and the people around this land look like a generation from now — and what is the first condition that has to change for that to begin?
Where does this reading disagree with what you have seen walking the land? That disagreement is the first thing to check on the ground.
These are not data gaps — they are the questions the data cannot answer.
Ask the analyst
Answers are grounded in this parcel's reading and tagged by basis — observed is measured, derived is reasoned from measurements, estimated is model-based, and unknown is said plainly. The conversation stays in your browser.
Reading this land to
Talk it through with us
This reading is built from satellite and open data. It cannot see soil biology, legal tenure, or what you already know from walking the land — a 30-minute call tests the reading against the ground and sequences the work. No cost, no obligation.
Global Forest Change (tree cover 2000 + annual loss)
~30 m · 2000–2023
CC-BY 4.0
Every number above is public, open data — named, dated, and licensed. What TERRA does not publish is the lens: the weights, curves, and verdict thresholds that turn these layers into a Land Score. That judgment is calibrated from land walked on the ground, and it stays proprietary.
Unavailable for this parcel: Sentinel-2, the radar, the governance record, the thermal read — the affected pillars were reweighted, not guessed.