117 kW Solar Sharing Project

Agrivoltaic Engineering Case

117 kW Solar Sharing Mounting Project in Japan

A project-specific agrivoltaic mounting configuration developed for a 117 kW solar-sharing project in Japan. The design combined an elevated agricultural structure, a 20 × 13 module array, 20° tilt, ground-pile foundation concept and structural inputs for local wind and snow conditions.

117 kW agrivoltaic solar-sharing mounting project in Japan
117 kW Solar-sharing mounting engineering for 260 modules in Japan.
Project Snapshot

Key Project Parameters

The mounting design combined agricultural clearance with a large regular array, project wind and snow conditions, and a pile-supported elevated structure.

117 kWProject Capacity
260PV Modules
20 × 13Array Configuration
20°Module Tilt
32 m/sDesign Wind Speed
40 cmSnow Condition
PortraitModule Orientation
Ground PileFoundation Concept
Project Requirements

Keeping Agricultural Space Usable Below the Solar Array

The project required a solar-sharing structure that elevated the PV array above the field rather than using a conventional low ground-mount table. The support layout therefore needed to balance module geometry, structural stability and usable agricultural space.

A regular 20 × 13 module arrangement provided 260 module positions, while the structural frame, column spacing and bracing were developed around the project dimensions and environmental design inputs.

  • Elevated frame suitable for agricultural use and site access
  • 260-module array using a regular 20 × 13 configuration
  • Portrait-oriented modules with a 20° tilt
  • 32 m/s design wind input and 40 cm snow condition
  • Ground-pile foundation concept with final site verification required
  • Repeatable rail, beam, column and connection details for project fabrication
Anonymized site layout for the 117 kW solar-sharing project in Japan
Engineering Solution

Elevated Solar-Sharing Structure for a Regular 20 × 13 Array

The design used a repeatable agricultural mounting concept while coordinating module spacing, structural spans, bracing and ground-pile foundations.

01

High-Clearance Frame

The PV support structure was elevated above the field to preserve agricultural use and access below the array.

02

20 × 13 Module Layout

A regular 260-module arrangement simplified row planning and enabled a consistent structural rhythm across the project.

03

20° Tilt Geometry

The 20° module inclination was integrated into the elevated frame, rail positions and bracing geometry.

04

Ground-Pile Foundation

Pile foundations formed the project basis, with final foundation suitability dependent on site and soil verification.

05

Braced Structural Bays

Repeating columns, beams and braces created a stable elevated frame that could be reproduced across the long array.

06

Project BOM Matching

Rails, structural profiles, clamps, connection hardware and foundation components were organized into a project-specific bill of materials.

Engineering Workflow

Turning an Agricultural Site Layout into a Production-Ready Structure

The project documentation shows how field requirements were translated into array geometry, structural drawings, BOM preparation and project supply.

01

Site & Module Inputs

Module dimensions, array count, agricultural use, wind, snow and site layout were defined.

02

Structural Configuration

Columns, beams, rails, braces, tilt and support positions were developed around the array.

03

Foundation Coordination

Ground-pile positions and structural interfaces were coordinated with the elevated frame and site conditions.

04

BOM & Supply Preparation

Project quantities and matching components were organized for fabrication, packing and shipment preparation.

Project Data

Engineering Reference Summary

Public project information is limited to useful engineering parameters. Customer identity, pricing, internal part numbers and confidential fabrication details are excluded.

Project TypeAgrivoltaic / Solar Sharing Mounting Project
LocationJapan
Project Capacity117 kW
Module Quantity260 modules
Module Size2094 × 1038 × 35 mm
Module OrientationPortrait
Array Configuration20 × 13 modules
Tilt Angle20°
Design Wind Speed32 m/s
Snow Condition40 cm
Terrain RoughnessCategory II
Design ReferenceJIS C 8955:2017 project basis
Foundation ConceptGround-pile foundation; final specification subject to geotechnical or field verification
Project GeometryRegular elevated agricultural array with repeatable column, beam, rail and brace connections
Engineering DeliverablesSite layout, structural drawings, project BOM and component matching for project supply
Engineering Drawings

Representative Project Views

Use simplified or anonymized graphics for the public website so customers can understand the engineering concept without exposing customer names, project numbers or confidential fabrication details.

Final structural dimensions, pile specification and foundation suitability remain project-specific and should be confirmed from site conditions and engineering requirements.

What This Project Demonstrates

Solar Sharing Requires Structural and Agricultural Planning Together

This project shows why an agrivoltaic frame cannot be treated as a conventional ground-mount structure that has simply been made taller. The array layout, support spacing, bracing, foundation concept and agricultural use all influence the final structure.

The regular 20 × 13 configuration also demonstrates how repeatable structural bays can help standardize project fabrication while the overall system remains tailored to the site and environmental conditions.

  • Agricultural clearance must be coordinated with structural stability
  • Wind and snow inputs become especially important for elevated structures
  • Foundation selection remains dependent on actual site and soil conditions
  • Repeatable bays can reduce unnecessary part variation in larger arrays
  • Project drawings and BOM preparation create a clearer path from design to production
Engineering view of the elevated solar-sharing mounting structure and agricultural clearance

Planning a Solar-Sharing or Agrivoltaic Project?

Send Easy Solar your farmland layout, module dimensions, required agricultural clearance, wind and snow conditions, machinery access and available soil or foundation information. Our team can review the mounting configuration and prepare a project-based solution.

  • Project location and farmland layout
  • Required clearance and machinery access
  • PV module size, quantity and orientation
  • Array layout and row arrangement
  • Wind speed and snow conditions
  • Soil information and foundation preference
  • Available drawings, photos or survey information
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