Electrical Power Generating System With Direction Transferring Module
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Solution Overview
Problem
Existing electrical power generating systems face inefficiencies in converting mechanical energy to electrical energy, particularly in managing directional changes and noise reduction during mechanical operation.
Innovation Solution
An electrical power generating system comprising a mechanical energy input source, a direction transferring module with a cross diverter mechanism, and two electrical generators connected through a power storage module, utilizing alloy steel and tempered steel components for durability and noise reduction, and an electromagnetism module with optimized disk and shaft designs for efficient energy conversion.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If a single electrical generator is used to convert mechanical energy to electrical energy, then the device complexity is low, but the energy conversion efficiency and power output are limited
Solution Approach 1:
The patent divides the single generator into two separate generators (first electrical generator and second electrical generator), each connected to different outputs of the direction transferring module. This segmentation allows independent optimization of each generator and enables parallel energy conversion, thereby improving overall energy conversion efficiency and power output while maintaining manageable system complexity through modular architecture
2Adaptability or versatility
If mechanical energy is converted directly to electrical energy without direction transfer, then the device complexity is low, but the adaptability to different motion directions is poor
Solution Approach 1:
The patent introduces a direction transferring module as an intermediary mechanism between the mechanical energy input source and the electrical generators. This module includes directional control components that can redirect mechanical energy from different motion directions to appropriate generators, enabling the system to adapt to various directional inputs while maintaining a structured and manageable mechanical configuration
3Object-affected harmful factors
If standard materials are used in the generator components, then the manufacturing cost is low, but the noise level and durability are insufficient
Solution Approach 1:
The patent specifies the use of alloy steel for the direction transferring module and tempered steel for critical components such as shafts and disks. These composite and enhanced materials provide superior noise reduction properties through improved damping characteristics and structural stability, while also enhancing durability. The selection balances manufacturing considerations with performance requirements for reduced operational noise
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The system effectively converts mechanical energy into electrical energy while reducing noise and enhancing modular assembly and disassembly, achieving efficient energy transfer and operational stability.
Implementation Method 1
electromagnetic induction is the first basic principle used by humans to generate electrical energy... Electromagnetic induction refers to a conductor placed in a varying magnetic flux that generates an electromotive force
Data Source
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AI summary
This present disclosure discloses an electrical power generating system, comprising a mechanical energy input, a direction transferring module, a first electromagnetic rotation module, a second electromagnetic rotation module and a power storage module. The direction transferring module is connected with the mechanical energy input. Moreover, the direction transferring module comprises a first output and a second output. The first output and the second output are deposed on two sides of the direction transferring module respectively. The first electromagnetic rotation module is connected with the first output, and the second electromagnetic rotation module is connected with the second output. On the other hand, the power storage module connects to the first electromagnetic rotation module and the second electromagnetic rotation module simultaneously.