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SCGFAMP – Applied Use Cases and Modular Grids (EN)

SCGFAMP – Visual Use Cases and Applications

SCGFAMP – Sample Grids Based on Basic Modules

The SCGFAMP system is built around a set of combinable modules designed to produce mechanical, hydraulic, or energy-based effects without the need for electricity. Even with only the basic modules, it is already possible to assemble functional GRIDs for concrete applications. Below are two developed examples based on such modules, followed by an outlook on future possibilities.

Example 1: Autonomous Pumping GRID

This GRID is based on the SCGFAMP+M+ module, which generates air pressure through gravity. This pressure is then used to move water through a pumping system, without any motor or electricity.

Modules used:

Applications:

Example 2: Modular Power Production GRID

The SCGFAMP+E uses the same gravity-based system as the M+ module, but converts mechanical energy into electricity via an air compression chain and a micro-turbine.

Modules used:

Applications:

Outlook: Future GRIDs and Extended Modules

Other GRIDs are currently under development based on advanced modules like SCGFAMP+E+ and SCGFAMP+E++. These systems integrate a minimal external energy boost (5W solar panels, piezo elements) to increase their cycle rate and produce up to 500–1000 Wh/day.

Envisioned examples:

These use cases demonstrate that SCGFAMP is not just a unique technical tool, but a flexible architecture platform for energy and water systems across a wide range of contexts.

SCGFAMP – Cas d’Usage Visuels

Ce document présente des exemples concrets d’utilisation du système SCGFAMP, adaptés à divers environnements et objectifs énergétiques ou humanitaires.

Pompage d’eau autonome

Utilisation en zone rurale ou isolée sans accès à l’électricité.

Désalinisation low-tech

Conversion de l’énergie mécanique en pression pour osmose ou distillation.

Production d’électricité mécanique

Conversion du mouvement vertical cyclique en rotation via engrenages ou alternateur.

Pression pulsée pour hydraulique

Pression intermittente générée via chute contrôlée pour alimenter des machines.

Stockage d’énergie gravitaire

Modularité verticale pour accumuler de l’énergie sous forme potentielle.

Réseaux GRID modulaires

Interconnexion de plusieurs modules pour alimenter un réseau autonome.

Usage mobile/désertique

Modules compacts transportables pour interventions d’urgence.

Intégration urbaine verticale

Colonne discrète intégrée à des bâtiments pour récupération énergétique passive.