Container Energy Storage Layout With Splitting Plate Waterproofing
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Solution Overview
Problem
Conventional container energy storage systems face issues with water resistance and damage due to holes formed for configuring energy storage members and system controllers, leading to potential water and foreign matter ingress during transportation.
Innovation Solution
A container energy storage system with a splitting plate and waterproof design, featuring a hollow main body with no pre-formed holes, where the splitting plate is electrically connected to functional assemblies and secured using adjustable fixing mechanisms, and sealed with waterproof tape to prevent water ingress.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If holes are formed on the container wall to dispose energy storage members and system controller, then ease of manufacture and installation is improved, but water resistance and structural integrity deteriorate
Solution Approach 1:
The container is divided into multiple sealed compartments by partition walls. Each compartment can independently house energy storage members or system controllers without requiring holes through the main container wall, thus maintaining water resistance while enabling modular installation.
Solution Approach 2:
Energy storage members and system controllers are installed within nested compartments formed by partition walls inside the container. This nested structure allows components to be disposed inside the container without penetrating the outer wall, preserving the container's waterproof integrity.
2Ease of operation
If holes are formed on the container wall to configure wires and components, then ease of operation and maintenance is improved, but structural strength and protection against foreign matter deteriorate
Solution Approach 1:
The container interior is segmented into accessible compartments by partition walls, allowing maintenance personnel to access specific components through designated openings in the partitions rather than requiring holes in the main container wall, thus maintaining structural strength while enabling maintenance access.
Solution Approach 2:
Partition walls with controlled openings serve as intermediary structures between the external environment and the components inside. These partitions provide controlled access points for maintenance while the main container wall remains intact and strong, preventing foreign matter ingress.
3Adaptability or versatility
If the container wall is broken to install components, then adaptability for component disposal is improved, but water resistance and protection against water ingress deteriorate
Solution Approach 1:
The container is divided into multiple sealed compartments using partition walls that can be configured to accommodate different component layouts. This segmentation provides adaptability for various component disposal arrangements while each compartment maintains its own water seal, preventing water ingress even as configurations change.
Solution Approach 2:
Partition walls are pre-installed to create sealed compartments before component installation. This preliminary action establishes the waterproof structure in advance, allowing components to be installed within the pre-defined sealed spaces without requiring any breaking of the container wall, thus maintaining water resistance while providing installation flexibility.
Data Source
AI summary
A container energy storage system is provided, including a container, a plurality of functional assemblies, and a splitting plate, wherein the splitting plate has a connecting port electrically connected to the functional assemblies. The container includes a hollow main body having an opening and two doors pivotally connected to the hollow main body. The functional assemblies are disposed in the hollow main body, and the splitting plate is disposed between the functional assemblies and the opening. When the doors are in a closed position, the doors cover the opening.


