3D Water Lamp Structure With Dual Sources for Light-and-Shadow Effects
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Solution Overview
Problem
Existing lighting solutions lack the ability to combine multiple lighting functions with interesting visual effects and three-dimensional modeling, failing to meet user needs for enhanced visual appeal in living spaces.
Innovation Solution
A light and shadow water lamp structure featuring a hollow three-dimensional water lamp body, a three-dimensional shell with a translucent sheet, and two groups of light-emitting members for irradiation, controlled by an electronic unit with a switch, allowing simultaneous or alternating lighting effects and three-dimensional modeling.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Illumination intensity
If conventional single-function lighting is used, then the device complexity is low, but the visual appeal and lighting effects are insufficient
Solution Approach 1:
The lighting system is segmented into two independent groups of light-emitting members: one group for irradiating the translucent sheet and another group for irradiating the water lamp body. This segmentation allows each group to perform its specific lighting function independently, creating diverse lighting effects while maintaining manageable system complexity through modular design.
Solution Approach 2:
The lighting device achieves multi-functionality by combining two distinct lighting purposes within a single device: illuminating the translucent sheet to create projected light effects and illuminating the water lamp body to create ambient lighting. This universal design allows the device to provide multiple lighting effects simultaneously, enhancing visual appeal without requiring separate lighting devices.
2Illumination intensity
If simple monochrome lighting is used, then the ease of manufacture is high, but the visual appeal and atmosphere creation are limited
Solution Approach 1:
Different parts of the device are assigned different lighting qualities and characteristics. The translucent sheet area receives lighting optimized for creating projected patterns and light effects, while the water lamp body receives lighting optimized for ambient illumination. This local quality differentiation enhances overall visual appeal while allowing each part to be manufactured with appropriate specifications.
Solution Approach 2:
The two groups of light-emitting members are positioned asymmetrically within the device structure, with one group oriented toward the translucent sheet and the other toward the water lamp body. This asymmetric arrangement creates diverse lighting angles and effects, enhancing visual appeal while maintaining a compact and manufacturable design.
3Illumination intensity
If static lighting design is used, then the ease of operation is high, but the visual sensation and user experience are平淡
Solution Approach 1:
The lighting device incorporates dynamic control capabilities by enabling independent operation of the two light-emitting member groups. The control unit allows the lighting modes to be switched between simultaneous illumination of both the translucent sheet and water lamp body, or alternating illumination between the two groups. This dynamic control flexibility enhances user experience and visual sensation while maintaining ease of operation through simple switching mechanisms.
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 structure provides enhanced visual appeal and interesting lighting effects through combined three-dimensional modeling and lighting, satisfying consumer preferences and improving user experience.
Implementation Method 1
two groups of light-emitting members were electrically connected to the power supply part
Implementation Method 2
in the wisp hollow part is provided with a translucent sheet... one group of light-emitting members of the light source of the translucent sheet irradiation
Implementation Method 3
a magnetic rotary member corresponding to the magnetic shaft is provided inside the body of the water lamp, and the magnetic rotary member is magnetically attracted to the magnetic shaft and rotates accordingly
Data Source
AI summary
Disclosed is a structure, including: a water lamp body, a shell and an electronic control unit, the water lamp body for the internal hollow three-dimensional shape, the shell is three-dimensional shape placed on the outside of the body of the water lamp, and the shell is opened with a wisp hollow part, and in the wisp hollow part of the light transmissive sheet, the electronic control unit contains a power supply part, light-emitting members, circuit boards and switches, light-emitting members are provided with two groups and were connected with the power supply part The light-emitting members are provided in two groups and are connected electrically with the power supply part, the light source of one group of light-emitting members is used to irradiate the light-transmitting sheet, and the light source of the other group of light-emitting members is used to irradiate the main body of the water lamp.


