Pool CAD Cost Calculation via Interactive Geometry Controls
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Solution Overview
Problem
Current computer-aided design systems for pool configurations lack efficient and accurate methods for configuring pool perimeter and depth profiles, which hinders real-time cost calculations and data generation for electronic documents.
Innovation Solution
An interactive graphical user interface with vertex and marker controls allows for the rapid and accurate configuration of pool perimeter and depth profiles, enabling dynamic cost calculations based on preconfigured parameters, with the ability to interpolate curves and adjust complexity, and generate electronic documents in real-time.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If traditional computer-aided design systems are used for pool configurations, then design capability is provided, but the configuration process is slow and lacks accuracy for real-time cost calculations
Solution Approach 1:
The pool configuration is segmented into distinct geometric components including perimeter definition through vertex controls, depth profile through marker controls, and area calculation through geometric decomposition. This segmentation allows each element to be configured and calculated independently, improving both speed and accuracy
Solution Approach 2:
The system transitions from traditional 2D plan views to a multi-dimensional configuration approach by adding vertical depth markers and 3D volume calculations. This dimensional enhancement enables accurate representation of pool geometry including varying depths, slopes, and three-dimensional spaces without sacrificing configuration speed
2Measurement precision
If detailed pool geometry configuration is performed manually, then accuracy is improved, but time consumption increases significantly
Solution Approach 1:
The system implements self-service through automated geometric calculations where the computer automatically computes perimeter lengths, area measurements, and volume calculations based on user-defined vertex and marker positions. This eliminates manual measurement and calculation time while maintaining high precision through algorithmic computation
Solution Approach 2:
The system performs preliminary geometric calculations and prepares cost calculation parameters in advance before final quotation generation. By pre-configuring calculation frameworks and maintaining ready-to-use cost databases, the system reduces the time required for final measurements and quotations while ensuring accuracy
3Productivity
If real-time cost calculation is implemented, then productivity is improved, but system complexity increases
Solution Approach 1:
The system manages complexity by organizing cost calculations around configurable parameters such as perimeter length, surface area, volume, and depth markers. These parameters serve as standardized inputs that can be adjusted without changing the underlying calculation framework, enabling real-time calculations while maintaining system manageability
Solution Approach 2:
The geometric configuration system serves multiple functions simultaneously: it defines pool boundaries, calculates perimeter and area, determines volume through depth markers, and provides data for cost calculations. This multi-functionality reduces the need for separate systems for each task, managing overall complexity while improving productivity
Data Source
AI summary
A pool quotation cost calculation system employs interactive graphical user interface configuration controls for rapid configuration of relatively accurate on-screen pool perimeter and depth profile geometry for many types of pool configurations suitable for making of relatively accurate cost calculations dynamically in substantial real-time using pre-configured size, area and/or volumetric dependent cost calculation parameters.


