LAYOUT PARALLEL ARRAY ROW INDOOR DUTCH BUCKET HYDROPONIC SYSTEM 3D Model

$45.00 -50%
$ 22.50 USD
LAYOUT PARALLEL ARRAY ROW INDOOR DUTCH BUCKET HYDROPONIC SYSTEM 3D Model
$45.00 -50%
$ 22.50
  • Available formats:
  • Item ID:
    618079
  • Date: 2025-12-15
  • Polygons:
    4429984
  • Vertices:
    3500912
  • Animated:
    No
  • Textured:
    No
  • Rigged:
    No
  • Materials:
    Yes
  • Low-poly:
    No
  • Collection:
    No
  • UVW mapping:
    No
  • Plugins Used:
    No
  • Print Ready:
    No
  • 3D Scan:
    No
  • Adult content:
    No
  • PBR:
    No
  • AI Training:
    No
  • Geometry:
    Poly NURBS
  • Unwrapped UVs:
    Unknown
  • Views:
    541

Description

High-quality 3D assets at affordable prices — trusted by designers, engineers, and creators worldwide. Made with care to be versatile, accessible, and ready for your pipeline.

Included File Formats
This model is provided in 14 widely supported formats, ensuring maximum compatibility:
• - FBX (.fbx) – Standard format for most 3D software and pipelines
• - OBJ + MTL (.obj, .mtl) – Wavefront format, widely used and compatible
• - STL (.stl) – Exported mesh geometry; may be suitable for 3D printing with adjustments
• - STEP (.step, .stp) – CAD format using NURBS surfaces
• - IGES (.iges, .igs) – Common format for CAD/CAM and engineering workflows (NURBS)
• - SAT (.sat) – ACIS solid model format (NURBS)
• - DAE (.dae) – Collada format for 3D applications and animations
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• - 3ds Max (.max) – Provided for 3ds Max users
• - Blender (.blend) – Provided for Blender users
• - SketchUp (.skp) – Compatible with all SketchUp versions
• - AutoCAD (.dwg) – Suitable for technical and architectural workflows
• - Rhino (.3dm) – Provided for Rhino users

Model Info
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• - Geometry uses real-world scale; model resolution varies depending on the product (high or low poly)
• • - Scene setup and mesh structure may vary depending on model complexity
• - Rendered using Luxion KeyShot
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More Information About 3D Model :
The "Layout Parallel Array Row Indoor Dutch Bucket Hydroponic System" describes a highly structured and optimized configuration utilized in Controlled Environment Agriculture (CEA) facilities for the soilless cultivation of large, fruiting crops, such as tomatoes, cucumbers, peppers, and various vine crops. This system is defined by its use of individual, recirculating containers—Dutch Buckets (also known as Bato Buckets)—arranged in dense, linear, and contiguous blocks to maximize production efficiency within an enclosed environment.

### Core Technology: Dutch Bucket System

The Dutch Bucket system operates on the principle of drip irrigation combined with nutrient recirculation (closed-loop system). Each bucket serves as an individual growing module, typically filled with an inert, non-soil substrate such as perlite, coco coir, or rockwool cubes, providing physical support and aeration for the root mass.

Nutrient solution is delivered to the top of the substrate via drip emitters connected to a pressurized supply line. A critical design feature is the siphon elbow or drain fitting located near the base of the bucket. This fitting maintains a shallow reservoir (approximately 2–5 cm deep) within the bucket, ensuring that the root zone remains hydrated while preventing complete saturation and subsequent anaerobic conditions. Excess nutrient solution drains through this siphon elbow back into a common return manifold, where it is sterilized, pH-adjusted, and reintroduced into the main nutrient reservoir for reuse. This recirculation minimizes water and nutrient waste, significantly improving resource efficiency compared to open-drain systems.

### Layout Configuration: Parallel Array Row

The layout refers to the spatial organization engineered for high-density indoor production:

1. **Row Organization:** The fundamental unit of the layout is the row. Dutch buckets are placed linearly, typically spaced according to the mature size of the specific crop (e.g., 40–70 cm spacing for tomatoes). These rows are aligned with the primary irrigation supply lines and return trenches or piping.
2. **Parallel Array:** A parallel array involves arranging multiple identical rows side-by-side, forming large, geometrically precise blocks. This configuration is essential for maximizing the utilization of available floor space and optimizing light distribution (whether natural sunlight in a greenhouse or artificial lighting in a vertical farm). The array structure facilitates standardized worker access paths (aisles) between blocks, enabling efficient crop management activities such as pruning, trellising, pest monitoring, and harvesting.
3. **Infrastructure Integration:** The parallel array layout necessitates complex infrastructure manifolds. Main nutrient supply lines feed across the top or end of the array, distributing nutrient solution uniformly to the parallel drip lines. Similarly, the return lines are consolidated into large common headers, ensuring centralized collection back to the reservoir.

### Indoor Environment Context

Designation as an "Indoor" system implies cultivation within a fully or partially controlled environment (e.g., dedicated grow rooms, warehouses, or climate-controlled greenhouses). This setup allows for precise control over crucial environmental variables—temperature, humidity, CO2 enrichment, and Photoperiod/Daily Light Integral (DLI). The parallel array row layout ensures that every plant receives uniform input from overhead artificial lighting systems or maximized solar exposure, which is critical for consistent yields and crop quality.

### Applications and Advantages

The Layout Parallel Array Row Dutch Bucket system is particularly suited for crops requiring extended growing periods and robust structural support, typically operating on a staggered planting schedule to ensure continuous harvest rotation.

**Key advantages include:**

* **Disease Isolation:** Since each plant resides in an individual container, localized root diseases are less likely to spread rapidly throughout the entire array compared to open trough systems.
* **Scalability:** The modular nature of the buckets and the geometric array structure allows for easy scaling, accommodating facilities ranging from small commercial operations to massive industrial farms.
* **Recirculation Efficiency:** High resource conservation due to the closed-loop recirculation mechanism.

KEYWORDS: Hydroponics, Dutch Bucket, Bato Bucket, Controlled Environment Agriculture, CEA, Parallel Array, Indoor Farming, Recirculating System, Closed-Loop, Drip Irrigation, Crop Production, Greenhouse, Grow Room, Substrate Culture, Perlite, Coco Coir, Nutrient Film Technique, Modular System, High Density, Crop Steering, Vine Crops, Tomatoes, Cucumbers, Water Efficiency, Nutrient Management, Manifold, Row Layout, Siphon Elbow, Drainage, Automation.

Print Ready: No

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We do not convert 3d scenes and solid formats such as .step, .iges, .stp, .sldprt etc!

Usage Information

LAYOUT PARALLEL ARRAY ROW INDOOR DUTCH BUCKET HYDROPONIC SYSTEM - You can use this royalty-free 3D model for both personal and commercial purposes in accordance with the Basic or Extended License.

The Basic License covers most standard use cases, including digital advertisements, design and visualization projects, business social media accounts, native apps, web apps, video games, and physical or digital end products (both free and sold).

The Extended License includes all rights granted under the Basic License, with no usage limitations, and allows the 3D model to be used in unlimited commercial projects under Royalty-Free terms.
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