Architectural & New Energy Architectural Sand Table Model Production Scheme

Architectural Sand Table Model

1. Project Overview

This scheme presents a customized realistic architectural sand table model for integrated new energy supply scenarios. The overall model size is 2000mm × 1500mm. The model adopts industrial realistic craftsmanship to visually display the whole process of hydrogen production, power supply, heating, cooling and fresh air system. It covers multiple application scenarios including hydrogen refueling stations, residential & industrial buildings, integrated circuit parks, data centers, intelligent manufacturing factories and heavy oil exploitation.

Architectural Sand Table Model

Equipped with an independent segmented dynamic lighting control system and customized high-standard base with glass guardrail, the model realizes modular display, intelligent lighting demonstration and high simulation of core equipment, which is applicable for exhibition display, technical presentation and project publicity.

2. Overall Model Specification

  • Overall Dimension: 2000mm (Length) × 1500mm (Width)
  • Production Style: Industrial realistic simulation, accurate proportion, clear process logic and hierarchical scene layout
  • Display System: Integrated new energy system of hydrogen, electricity, heat, cold and fresh air

3. Realistic Craft Production of Scenarios & Processes

The model highly restores the actual operation process and site environment of new energy systems, covering core energy production, energy supply, energy storage and terminal application scenarios.

3.1 Core New Energy Process Module

  • In-situ Methane Decarbonization Hydrogen Production: Restore raw material delivery, decarbonization reaction, gas separation and purification, hydrogen storage and transmission equipment, and display the complete hydrogen production process.
  • Thermochemical + Electrochemical Hydrogen Production: Simulate dual hydrogen production processes, including heating reaction, electrolysis unit, energy supply system and hydrogen purification device, reflecting the technical characteristics of two hydrogen production methods.
  • Distributed Energy Supply System: Realize integrated simulation of power, heating, cooling and fresh air supply, restore energy scheduling unit, heat exchange unit, refrigeration equipment and fresh air treatment system, showing the multi-energy collaborative supply mode.
  • Energy Storage System: Simulate energy storage battery pack, energy management system, charge-discharge control and voltage stabilization equipment, visually demonstrating energy storage, peak regulation and on-demand energy release functions.
Architectural Sand Table Model

3.2 Terminal Application Scenarios

  • Transportation Hydrogen Refueling Station: Restore station building, hydrogen storage tank, hydrogen refueling equipment and supporting facilities.
  • Building Scenarios: Realistic production of residential communities and industrial park buildings, matching HVAC and fresh air energy supply system.
  • High-tech Industrial Scenarios: Restore integrated circuit industrial park, data center and intelligent manufacturing workshop, showing stable new energy supply for precision production and data operation.
  • Heavy Oil Exploitation Scenario: Simulate oilfield operation area and new energy supporting equipment, demonstrating new energy application in petroleum exploitation.

4. Independent Segmented Lighting Control System

The architectural sand table model is equipped with 5 independent control circuits with physical switch buttons, adopting dynamic flowing light and constant light mode to distinguish different functional modules, realizing independent single-module display and multi-module combined display.

  • Circuit 1: In-situ Methane Decarbonization Hydrogen Production (Dynamic Light) — Flowing gradient light simulates material transportation, chemical reaction and hydrogen output process.
  • Circuit 2: Thermochemical & Electrochemical Hydrogen Production (Dynamic Light) — Zoned dynamic switching light to distinguish two hydrogen production processes.
  • Circuit 3: Distributed Energy Supply System (Dynamic Light) — Simulate multi-energy transmission and collaborative supply dynamic effect.
  • Circuit 4: Energy Storage System (Dynamic Light) — Simulate charging and discharging dynamic light effect of energy storage equipment.
  • Circuit 5: All Application Scenarios (Constant Light) — Keep constant bright for all terminal application scenes to restore real operation atmosphere.

Five independent physical control buttons are set on the architectural sand table model side for one-key switch control of each module.

5. Customized Building Architectural Sand Table Model Base Specification

  • Base Height: 70cm; Border Width: 5cm
  • Internal Structure: Custom solid wood keel frame, stable bearing, anti-deformation and durable.
  • Surface Process: High-grade white baking paint panel, smooth, uniform color, scratch-resistant and anti-fading.
  • Ambient Light: Surround embedded white light strip, soft and uniform lighting, improving overall hierarchical sense.
  • Safety Guardrail: 8mm thick transparent tempered glass around the base, high light transmittance, impact resistance, protecting model integrity.

6. High Simulation Equipment Production Standard

All core process equipment and scene facilities are produced withhigh-precision simulation technology:

  • Strict proportional scaling, consistent with real industrial equipment structure and appearance.
  • Fine restoration of pipeline, valve, instrument, interface and equipment details.
  • Simulate real material texture of metal, insulation and anti-corrosion equipment.
  • Standardized pipeline layout with clear process direction and professional presentation effect.

7. Production & Delivery Standard

The whole process includes scheme confirmation, 3D modeling, scene production, lighting wiring, base customization, overall assembly and debugging. The final delivered architectural sand table model features stable structure, smooth lighting control, realistic scene restoration and complete display functions, meeting long-term exhibition and demonstration requirements.

8. After-sales Service

Provide complete product specification instructions, quality warranty and long-term technical consultation and maintenance service.