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ClimateScore Planning

About

Asset-level physical risk analysis

ClimateScore™ Planning is a comprehensive suite of asset-level physical risk analysis applications — FloodScore, WindScore, HeatScore, and FireScore — that empowers decision-makers to answer the question, “How will the future climate lead to extreme weather that affects my assets?”

ClimateScore Planning's truest-to-the-real-world, high-resolution data offers bottom-up analysis of specific perils to individual assets and locations.

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Flexible time horizons, selected by customers

Ultra-high Resolution climate risk analysis of target geographies

Dynamic models using the latest climate data

Scenario-based approach

Intuitive GIS interface or data download

ClimateScore Planning probabilistically predicts and maps the increasing risks of climate-change-driven perils. Its projections are based on rigorous climate, weather, ocean, hydrological, fire, and data science; they utilize novel data sources like satellite, air, land, and ocean-borne sensors and large-scale climate models that simulate Earth’s past, present and future climate states.

Through a computationally intensive process powered by cloud computing and artificial intelligence, Jupiter dynamically down-scales the CESM® global climate model to project the probable impacts of extreme weather perils on specific assets down to resolutions of one to three meters—and by special customer request, even higher resolutions—over time horizons that range from hours to 50+ years into the future.

Jupiter FloodScore

Jupiter FloodScore™ helps users prepare for potential flooding related to a changing climate. Our proprietary models capture the complex interaction among flood-generating factors. The resulting analyses probabilistically predict the expected flood level in any designated area for a specific asset as small as a loading dock or on-premise flood protection. Private and public sector organizations can make informed decisions to prevent asset damage and property loss, and even save lives.

Water Splash
Flooding variables
Natural Events
Precipitation
Hurricane Precipitation
Temperature
Tides
Erosion & Subsidence
Hurricane Storm Surges
Nor’easter Storm Surges
Waves
Runoff
Natural features
Elevation
Sub-surface Flow
Surge-river Interaction
Constructed features
City Infrastructure
Drainage
Mitigation Infrastructure
climate change
Ocean Temperature
Atmospheric Moisture
Sea Level
Storm Intensity

Jupiter FloodScore

Jupiter FloodScore helps users prepare for potential flooding related to a changing climate. Our proprietary models capture the complex interaction among flood-generating factors. The resulting analyses probabilistically predict the expected flood level in any designated area for a specific asset as small as a loading dock or on-premise flood protection. Private and public sector organizations can make informed decisions to prevent asset damage and property loss, and even save lives.

Water Splash
Flooding variables
Natural Events
Precipitation
Hurricane Precipitation
Temperature
Tides
Erosion & Subsidence
Hurricane Storm Surges
Nor’easter Storm Surges
Waves
Runoff
Natural features
Elevation
Sub-surface Flow
Surge-river Interaction
Constructed features
City Infrastructure
Drainage
Mitigation Infrastructure
climate change
Ocean Temperature
Atmospheric Moisture
Sea Level
Storm Intensity

Jupiter HeatScore

Jupiter HeatScore™ helps organizations mitigate the heat- and cold-related impacts of climate change by predicting extreme temperatures. The resulting analyses predict expected temperatures probabilistically across a range of heat variables necessary for informing load forecasting and planning, infrastructure design, and public health and safety.

Sun
Heating Variables
Atmospheric drivers
Heat
Humidity
Wind
Aerosol Loading
Local conditions
Topography and Elevation
Vegetation
Water Bodies
Soil Moisture
Constructed features
Land-use
Man-made Structures
Human Activities (e.g. waste heat)
Mitigation (e.g. vegetation, cool roofs)
climate change
Warming or Cooling
Atmospheric Moisture
Cloud Cover
Aerosold
Surface Albedo

Jupiter HeatScore

Jupiter HeatScore helps organizations mitigate the heat- and cold-related impacts of climate change by predicting extreme temperatures. The resulting analyses predict expected temperatures probabilistically across a range of heat variables necessary for informing load forecasting and planning, infrastructure design, and public health and safety.

Sun
Heating Variables
Atmospheric drivers
Heat
Humidity
Wind
Aerosol Loading
Local conditions
Topography and Elevation
Vegetation
Water Bodies
Soil Moisture
Constructed features
Land-use
Man-made Structures
Human Activities (e.g. waste heat)
Mitigation (e.g. vegetation, cool roofs)
climate change
Warming or Cooling
Atmospheric Moisture
Cloud Cover
Aerosold
Surface Albedo

Jupiter WindScore

Jupiter WindScore™ provides maps of probabilistic predictions of wind characteristics from six months to 50-plus years in advance. It uses Jupiter’s best-in-science dynamic models and machine-learning platform to deliver quantifiable analysis of changes in wind at very high spatial and temporal resolution to factor in local effects on wind. Private and public sector organizations can make informed decisions to protect assets, limit business downtime, and save lives and property.

wind
wind variables
Atmospheric drivers
Wind
Heat
Local conditions
Topography and Elevation
Vegetation Canopy and State (e.g. active/dormant)
Building Height and Density
Water Bodies
climate change
Warming or Cooling

Jupiter WindScore

Jupiter WindScore provides maps of probabilistic predictions of wind characteristics from six months to 50-plus years in advance. It uses Jupiter’s best-in-science dynamic models and machine-learning platform to deliver quantifiable analysis of changes in wind at very high spatial and temporal resolution to factor in local effects on wind. Private and public sector organizations can make informed decisions to protect assets, limit business downtime, and save lives and property.

wind
wind variables
Atmospheric drivers
Wind
Heat
Local conditions
Topography and Elevation
Vegetation Canopy and State (e.g. active/dormant)
Building Height and Density
Water Bodies
climate change
Warming or Cooling

Jupiter
FireScore

Jupiter FireScore™ quantifies risk from wildfire in a changing climate, facilitating mitigation of risk to lives, property and infrastructure. FireScore operates in real-time and climate-time horizons, providing firefighters and first responders intelligence and decision support and planning for critical infrastructure including the electrical grid. FireScore captures current and future trends in drought, rain and forest health, using the latest available science and data.

Fire
Fire spread Variables
Atmospheric drivers
Heat
Humidity
Wind
Precipitation
Local conditions
Slope & Aspect
Live Vegetation Moisture
Dead Fuel Moisture
Fuel Load
Vegetation Type & Height
Constructed features
Land-use (Wildland-Urban Interface)
climate change
Drought
Changes in Precipitation
Fuel Buildup
Tree Mortality

Jupiter
FireScore

Jupiter FireScore™ quantifies risk from wildfire in a changing climate, facilitating mitigation of risk to lives, property and infrastructure. FireScore operates in real-time and climate-time horizons, providing firefighters and first responders intelligence and decision support and planning for critical infrastructure including the electrical grid. FireScore captures current and future trends in drought, rain and forest health, using the latest available science and data.

Fire
Fire spread Variables
Atmospheric drivers
Heat
Humidity
Wind
Precipitation
Local conditions
Slope & Aspect
Live Vegetation Moisture
Dead Fuel Moisture
Fuel Load
Vegetation Type & Height
Constructed features
Land-use (Wildland-Urban Interface)
climate change
Drought
Changes in Precipitation
Fuel Buildup
Tree Mortality

WHAT PEOPLE SAY ABOUT JUPITER

Testimonials

“We sought more sophisticated data and forecasting tools for long-term planning,” says Colton Ching, Hawaiian Electric’s senior vice president of planning and technology. “By adding Jupiter’s climate risk analytics into our integrated grid planning process, we are significantly advancing our ability to make better decisions about the need, location, and timing of investment to cost effectively provide the level of electric system resilience our customers expect.”

Special Report: Grids Turn to High-Resolution Climate Analytics as a Strategic Tool for Resiliency Planning – Jupiter

Colton Ching, Hawaiian Electric’s senior vice president of planning and technology

Colton Ching, Hawaiian Electric’s senior vice president of planning and technology

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