egovernments / Digit-Core

DIGIT is an open source modular Micro-services multi-tenant platform for public service delivery.
https://core.digit.org
MIT License
16 stars 52 forks source link

Open source GIS tool for planning of water harvesting/recharging zones and appropriate structures in Indian cities #373

Open Taherabharmal opened 7 months ago

Taherabharmal commented 7 months ago

Summary:

The "Open Source GIS Tool for Water Harvesting Planning in Indian Cities" aims to develop a user-friendly and accessible GIS tool to support sustainable water management in urban areas across India. The tool will empower urban planners, engineers, policymakers, and community stakeholders to identify suitable locations for water harvesting and design appropriate structures to harness rainwater effectively. By integrating geospatial data and advanced analytical capabilities, the tool will facilitate informed decision-making, optimize water harvesting strategies, and promote community participation in water conservation initiatives. Emphasizing openness, scalability, and user-centric design, the project seeks to foster collaboration, capacity building, and policy influence to address water scarcity challenges and promote resilience in Indian cities.

Goals

  1. Enhancing water management in a city: Develop a tool that aids urban planners, engineers, and policymakers in identifying suitable locations for water harvesting and designing appropriate structures to optimize water resource management in Indian cities. Pick and choose one small city in India to pilot this tool. Gather all the requirements, like data satellite images, existing GIS tools for analysis etc and create a water rejuvenation plan of a city.

  2. Increase sustainability in water management: Promote sustainable water management practices by facilitating the implementation of rainwater harvesting systems and other water conservation measures at the local level.

  3. Improving accessibility: Ensure the tool is accessible to a wide range of stakeholders, including government agencies, municipal authorities, non-governmental organizations (NGOs), and community groups, regardless of their technical expertise or financial resources.

  4. Context invariant and scalable: Design the tool to be scalable and adaptable to different urban contexts, ranging from smaller NACs to larger municipalities and across diverse geographical and climatic conditions in India.

  5. User-Centric Design: Designing an intuitive and user-friendly interface that facilitates efficient decision-making and planning processes related to water harvesting.

  6. Data Integration: Enable seamless integration of various geospatial datasets, including topography, land use, hydrology, drainage, percolation, lithology, lineament, watershed, slope, rainfall patterns, infrastructure networks, and population density, to provide comprehensive information for water harvesting planning and analysis.

  7. GIS tool for governance in increasing the blue infrastructure at a city level. The tool gives a view of all the blue, grey, and green infrastructure, and city administrations or ward level governance can be established by using the tool to identify the appropriate zones, enhance recharging capacity, and incentivize the best locality for doing so.

Outcomes:

  1. Identification of Suitable Water Recharging Zones: The GIS tool should enable users to identify potential areas for water harvesting structures/zones based on factors such as land use, terrain, slope, drainage, watershed, lineament, lithology, drainage, public infrastructure, topography, population density, and rainfall intensity, helping prioritize locations for intervention.

  2. Optimized Design of Structures: Users will be able to design and optimize the layout and specifications of water harvesting structures, such as rooftop rainwater harvesting systems, check dams, percolation pits, recharge wells, drainage systems, and lakes, to maximize water yield and efficiency.

  3. Risk Assessment and Mitigation: The tool will facilitate risk assessment and mitigation strategies for water harvesting projects by analyzing factors such as flood risk, groundwater contamination, and land use conflicts.

  4. Decision Support: Provide decision support tools and scenario analysis capabilities to evaluate the effectiveness of different water harvesting strategies, compare alternative scenarios, and make informed decisions on investment priorities and resource allocation.

Acceptance Criteria

  1. Functional GIS Tool: The GIS tool should be fully functional and capable of performing key tasks, like identifying suitable water harvesting zones and designing appropriate structures based on user inputs and geospatial data.
  2. User Interface: The user interface should be intuitive, user-friendly, and accessible to users with varying levels of technical expertise. It should enable users to interact with the tool efficiently and effectively.
  3. Data Integration: Relevant geospatial datasets, such as topography, land use, rainfall patterns, and hydrological data, etc should be successfully integrated into the tool to support analysis and decision-making related to water harvesting planning.
  4. Accuracy and Reliability: The tool should produce accurate and reliable results, with minimal errors or discrepancies in the analysis and output generated.
  5. Documentation: Comprehensive documentation, including installation instructions, user manuals, technical specifications, and data sources, should be provided to guide users in installing, configuring, and using the GIS tool effectively.
  6. Testing: Thorough testing should be conducted to ensure the functionality, reliability, and usability of the GIS tool across different operating environments, datasets, and user scenarios.
  7. Performance: The tool should demonstrate satisfactory performance in terms of speed, efficiency, and resource utilization, even when processing large datasets or complex analysis tasks.
  8. Feedback Mechanism: Mechanisms for receiving feedback from users and stakeholders should be established to gather input on the tool's performance, usability, and effectiveness for continuous improvement.
  9. Documentation of Process: The student should maintain documentation of the development process, including design decisions, challenges faced, solutions implemented, and lessons learned throughout the project. Out of Scope
  10. Large-Scale Deployment: The project's scope may not include the deployment of the GIS tool on a large scale across multiple cities or regions.
  11. Customization for Every City: Customizing the GIS tool for every Indian city or region may be out of scope. The project may focus on developing a generic tool that can be adapted or customized by users based on their specific needs and local conditions.
  12. User Training
  13. Policy Development: The project may not involve the development of policy frameworks, guidelines, or regulations related to water harvesting in Indian cities.
  14. Long-Term Maintenance and Support: While the project may include mechanisms for receiving feedback and making iterative improvements to the GIS tool, long-term maintenance and support beyond the duration of the project may be out of scope. Although online training resources would be provided and online support community would be nurtured

Implementation Details:

  1. Requirement Gathering and Analysis:

User Requirements Analysis:

Data Collection and Analysis:

Design Specification:

  1. Development

Prototype Development:

Data Integration:

Algorithm Development:

  1. Testing and Validating:

Unit Testing:

User Acceptance Testing (UAT):

  1. Performance evaluation and Analysis report

Performance evaluation:

Analysis report

Mockups / Wireframes ……………………………………

Product Name DIGIT

Project Name Open source GIS tool for planning of water harvesting zones and appropriate structures in Indian cities

Organization Name: eGovernments Foundation

Domain Public Services

Tech Skills Needed: Creative and Innovative mindset Proficient knowledge of Geographic Information Systems (GIS) Programming Languages Python, JavaScript/Java Spatial Database Management like PostGIS, SQLite etc Data Integration and Analysis UI/UX design skills for creating user-friendly interfaces Documentation, Communication Scalability and Performance Optimization Security and Privacy Considerations

Mentor(s) Aniket Talele

Complexity High

Category Feature

Sub Category API, Frontend, Backend

AkanshuAich commented 7 months ago

Hii @naveen-egov, I am Akanshu Aich, a third year BTech student from International Institute of Information Technology, Bhubaneswar. I am writing to express my interest in contributing to this project as a part of DMP 2024. Having thoroughly reviewed the project, I am impressed by its objectives and it seeks the potential for great impact in industries.

With my background in Backend using Django , MERN with practicing hands on Machine learning and DevOps such as Docker, I believe I can make valuable contributions to Machine learning part . My experience includes several projects like Society-Expenditure Manager using Django, Real Estate using MERN and Info-Finding Tool using Machine Learning(LLM), which I believe align well with the goals of your project.

I am particularly interested in fulfilling the requirements of the project and have some ideas on how to approach it effectively. I am committed to adhering to best practices, contributing high-quality code, and actively collaborating with the project maintainers and community.

I am excited about the opportunity to contribute to "DIGIT" and help further its mission. I look forward to discussing potential contributions and how I can best support the project.

AbhimanyuSamagra commented 7 months ago

Do not ask process related questions about how to apply and who to contact in the above ticket. The only questions allowed are about technical aspects of the project itself. If you want help with the process, you can refer instructions listed on Unstop and any further queries can be taken up on our Discord channel titled DMP queries. Here's a Video Tutorial on how to submit a proposal for a project.

kvdevlopment commented 6 months ago

Hello @Taherabharmal , I am writing to express my strong interest in contributing to the development of "DIGIT," the open-source GIS tool for water harvesting planning in Indian cities, under your mentorship. The project's objective to develop a user-friendly and accessible tool to support sustainable water management resonates deeply with my passion for leveraging technology to address pressing environmental challenges.

With my background in Geographic Information Systems (GIS), programming languages such as Python and JavaScript, and experience in spatial database management, I believe I can make meaningful contributions to the project. I am particularly excited about the opportunity to work on enhancing water management in a city, increasing sustainability in water management practices, and ensuring the accessibility and scalability of the tool, as outlined in the project goals.

I am committed to leveraging my skills in UI/UX design to contribute to the user-centric design of the tool, ensuring that it is intuitive and efficient for users with varying levels of technical expertise. Additionally, I am eager to collaborate on data integration, algorithm development, and testing and validation to ensure the accuracy, reliability, and performance of the GIS tool.

Best regards, Kanchan

DebasishTripathy13 commented 6 months ago

Dear @naveen-egov ,

I'm an ISRO certified GIS developer with strong computer science and machine learning skills, excited to contribute to the "Open Source GIS Tool for Water Harvesting Planning in Indian Cities" project. My experience in spatial analysis, remote sensing, and machine learning (TensorFlow/PyTorch) would be valuable for developing a powerful and accessible water harvesting tool.

My passion for sustainability aligns with your project's goals. I'm eager to collaborate and contribute my expertise.

See my resume for details.

Thank you, Debasish Tripathy dere.pdf

SGCODEX commented 3 months ago

Issue Link: egovernments/egov-rnd/issues/25

Weekly Learnings & Updates

Week 1

1. Prerequisites

Week 2

1. Satellite Images

Week 3

1. Shape Files and Folium

Week 4

1. Google Earth Engine and Water Sources

Week 5

1. Adding Shape Files and Household Estimation

Week 6

1. Refining ROI and Household Estimation V2

Week 7

1. Geemap and More Functionalities

Week 8

1. Scope of the Project and Python Conversion

Week 9

1. Data Acquisition and Preparation

Week 10

1. Shortest Distance/Path Algorithm Development

Week 11

1. Network Visualization

Week 12

1. Application Development and Testing

060b0c_8029055ce0074bfaa4bb6d9f1c2c33d2~mv2 1

aaradhya-egov commented 3 months ago

Weekly Goals

Week 1

Week 2

Week 3

Week 4

Week 5

Week 6