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This study introduces a virtual reality tool to help farmers visualize tree planting designs that balance carbon sequestration with farm profitability. It aids farmers in making informed decisions for sustainable land management.

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Area of Science:

  • Agricultural Science
  • Environmental Science
  • Computer Science (Virtual Reality)

Background:

  • Pastoral farmers face pressure to reduce livestock carbon emissions.
  • Tree planting is a popular but complex strategy for carbon offsetting.
  • Farmers require tools to guide species selection and planting locations for optimal outcomes.

Purpose of the Study:

  • To develop a decision-support tool for farmers to design tree planting scenarios.
  • To enable balancing of carbon sequestration goals with farm profitability.
  • To integrate virtual reality (VR) and biophysical models for scenario visualization.

Main Methods:

  • Combined virtual reality (VR) technology (Unreal Engine) with biophysical models.
  • Incorporated environmental, financial, and high-resolution spatial data.
  • Developed an interactive environment for farmers to create and visualize future farm scenarios.

Main Results:

  • The tool allows simultaneous balancing of multiple objectives: farm aesthetics, economic returns, business goals, environmental ambitions, and net carbon balance.
  • Demonstrated a proof-of-concept on a 400-hectare New Zealand livestock farm.
  • Users can actively create and assess virtual farm designs.

Conclusions:

  • The VR-based decision-support tool offers an innovative approach to sustainable farm management.
  • It empowers farmers to visualize and optimize land use for environmental and economic benefits.
  • This technology can aid in achieving net carbon balance while maintaining farm viability.