Open Access Peer Reviewed COPE Aligned DOI Pending Version of Record

Official Article Landing Page

Sustainable Water Resource Management in Arid Regions: Challenges and Solutions in the Indian Context

International Journal of Arts, Commerce, Science and Technology International Open Access, Peer-reviewed, Refereed Journal

Permanent DOI DOI will be updated soon.

Google Scholar indexing depends on Google Scholar’s crawl schedule. DOI verification opens the official DOI resolver.

Official DOI Landing Verification

This page is the official article landing page for the DOI and published Version of Record.

DOI StatusPending
PDF StatusAvailable
LicenseCC BY 4.0
MetadataMachine-readable
VersionVersion of Record
Article IntegrityVerified
Crossref RegistrationReady
Google Scholar StatusMetadata Ready
Peer ReviewCompleted
Archiving StatusPreserved

Article Metadata

Article IDIJACST-V1I1-014
Article TypeOriginal Research Article
Volume1
Issue1
Pages1-12
Published30 November 2025
LanguageEnglish
ISSN3108-2998
DOI Prefix10.65919
PublisherUnivColl Publications
Access ModelOpen Access
Peer ReviewDouble-Blind
LicenseCC BY 4.0
Article DOITo be updated

Authors & Affiliations

* Corresponding Author. Author contact details are available in the published PDF article as per journal policy.

Received 15 October 2025
Accepted 05 November 2025
Published 30 November 2025

Abstract

Sustainable water resource management in arid regions is critical for ensuring long-term water security, especially in a country like India where climatic variability, rapid population growth, and intensive agricultural practices place severe pressure on limited water resources. Arid and semi-arid regions such as Rajasthan, parts of Karnataka, Telangana, and western India face acute water scarcity due to low precipitation, high evaporation rates, groundwater over-extraction, and declining surface water availability. Groundwater depletion, deteriorating water quality, institutional fragmentation, and inadequate infrastructure further complicate effective management. Climate change has intensified extreme events such as droughts and floods, disrupting hydrological cycles and reducing the reliability of traditional water systems. Sustainable solutions therefore require integrated approaches such as demand management, improved irrigation efficiency, artificial groundwater recharge, rainwater harvesting, conjunctive use of surface and groundwater, and nature-based solutions for ecosystem restoration. Community-led initiatives, technological interventions, and policy frameworks such as Integrated Water Resources Management (IWRM) offer promising pathways for enhancing resilience. Case studies from Rajasthan, Karnataka, Telangana, and western India demonstrate that coordinated planning, decentralised governance, and scientific monitoring can significantly improve water availability. Strengthening institutions, expanding infrastructure, and adopting climate-adaptive strategies remain essential for achieving sustainable water management in India’s arid regions.

Keywords & Indexing Terms

Download Center

Indexing & Verification

Article Metrics

Article Views13
PDF Downloads0
Total Pages12

Metrics are indicative and may update periodically after indexing, downloads and citation tracking are enabled.

Article Integrity & Transparency

Peer ReviewDouble Blind
Plagiarism CheckCompleted
COPE ComplianceFollowed
Correction StatusNo correction issued
Retraction StatusNot retracted
VersionVersion of Record

License & Copyright

Creative Commons Attribution 4.0

Copyright © 2025 International Journal of Arts, Commerce, Science and Technology. This work is licensed under a Creative Commons Attribution 4.0 International License . Authors retain copyright and grant the journal the right of first publication.

How to Cite

Dr. Amar Kumar (2025). Sustainable Water Resource Management in Arid Regions: Challenges and Solutions in the Indian Context. International Journal of Arts, Commerce, Science and Technology, 1(1), 1-12

PDF Preview

If the PDF preview does not load on your device, open the PDF directly or use the Download PDF button. Open PDF in new tab

Declarations

Funding

No external funding information has been declared unless stated in the published PDF.

Conflict of Interest

The authors declare no conflict of interest unless otherwise stated in the article.

Ethical Approval

Ethical approval status is as per the article and journal policy.

Data Availability

Data availability is as declared by the author(s) in the published article.

Author Contributions

Author contributions are recorded as per submitted manuscript and editorial records.

AI-use Declaration

AI-use declaration is governed by journal policy and author disclosure.

Publisher's Note

  • ✓ The views, opinions and conclusions expressed in this article are solely those of the author(s).
  • ✓ Publication of this article does not imply endorsement by IJACST, the editorial board or the publisher.
  • ✓ Responsibility for the accuracy, originality and integrity of the work remains with the author(s).
  • ✓ Readers are encouraged to independently evaluate and verify the information before application or citation.
  • ✓ IJACST and UnivColl Publications shall not be held liable for any consequences arising from the use of the published content.

References

Showing first 3 references. Click “Show All References” to view complete list.

  1. 1. Sheriff Hemoh, S. & Shenbei, Z. (2014). Sustainable Integrated Management Framework for Water Resources (SIMFWR) in Africa Arid Regions. https://core.ac.uk/download/pdf/234681740.pdf
  2. 2.. M. Singh, K., Singh, R. K. P., Meena, M. S., & Kumar, A. (2013). A Review of Indian Water Policy. https://mpra.ub.uni-muenchen.de/45230/1/MPRA_paper_45230.pdf
  3. 3. Koundouri, P. & Karousakis, K. (2006). Water Management in Arid and Semi-Arid Regions: Interdisciplinary Perspectives. https://mpra.ub.uni-muenchen.de/38231/1/MPRA_paper_38231.pdf
  4. 4. D Clark, B. (2019). Crops, Canopies and Waiting for Rain Water for Small-Plot Agricultural Production in the Tropics. https://academiccommons.columbia.edu/doi/10.7916/d8-bm36-d559/download
  5. 5. Venu Menon, S. (2007). Ground Water Management: Need for Sustainable Approach. https://mpra.ub.uni-muenchen.de/6078/1/GROUND_WATER_MANAGEMENT.pdf
  6. 6. P Sishodia, R., Shukla, S., P Wani, S., D Graham, W., & W Jones, J. (2018). Future irrigation expansion outweigh groundwater recharge gains from climate change in semi-arid India. https://oar.icrisat.org/10802/1/Future%20irrigation%20expansion%20outweigh%20groundwater%20recharge%20gains%20from%20climate%20c ...]
  7. 7. Ghosh, S., Vittal, H., Sharma, T., Karmakar, S., S. Kasiviswanathan, K., Dhanesh, Y., P. Sudheer, K., & S. Gunthe, S. (2016). Indian Summer Monsoon Rainfall: Implications of Contrasting Trends in the Spatial Variability of Means and Extremes. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4963102/
  8. 8. Schultz, B. & De Wrachien, D. (2002). Irrigation and Drainage Systems: Research and Development in the 21st Century. https://ui.adsabs.harvard.edu/abs/2002IrrDr..51..311S/abstract
  9. 9. K. Jha, M., C. Peralta, R., & Sahoo, S. (2020). Simulation-Optimization for Conjunctive Water Resources Management and Optimal Crop Planning in Kushabhadra-Bhargavi River Delta of Eastern India. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7277523/
  10. 10. Biemans, H. & Siderius, C. (2019). Advances in global hydrology–crop modelling to support the UN’s Sustainable Development Goals in South Asia. https://www.sciencedirect.com/science/article/pii/S0048969718332361
  11. (Note: Direct PDF link not located; publisher access via abstract.)
  12. 11. Sahoo, S., Chakraborty, S., Bao Pham, Q., Sharifi, E., Sh. Sammen, S., Vojtek, M., Vojteková, J., Elkhrachy, I., Costache, R., & Thi Thuy Linh, N. (2021). Recognition of district-wise groundwater stress zones using the GLDAS-2 catchment land surface model during lean season in the Indian state of West Bengal. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7778431/
  13. 12. Spross, M. (2015). Perceptions of Potable Water in Rajasthan’s Jodhpur and Barmer Districts. https://google.com/search?q=Spross+M.+2015+Perceptions+of+Potable+Water+in+Rajasthan%E2%80%99s+Jodhpur+and+Barmer+Districts.+filetype:pdf
  14. 12. Pathak, P., P Wani, S., Singh, P., Sudi, R., & S Rao, C. (2006). Hydrological Characterization of Benchmark Agricultural Watersheds in India, Thailand, and Vietnam. https://oar.icrisat.org/10802/
  15. 13. N. Bhanja, S., Mukherjee, A., Rodell, M., Wada, Y., Chattopadhyay, S., Velicogna, I., Pangaluru, K., & S. Famiglietti, J. (2017). Groundwater rejuvenation in parts of India influenced by water-policy change implementation. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5547062/

Related Articles

Publish Your Research With IJACST

Submit your original research article, review paper, case study or conceptual paper to an international open access, peer-reviewed and refereed journal.

Article Transparency Report

This transparency report provides information regarding peer review, editorial evaluation, publication ethics, metadata verification, DOI registration, article integrity, licensing, archiving and scholarly publishing standards followed by IJACST.

Conflict of InterestAs Declared by Author(s)
Funding SourceAs Declared in Article
AI Usage DeclarationAs Per Journal Policy
Ethical ComplianceVerified
Peer Review ModelDouble-Blind Peer Review
Editorial ScreeningCompleted
Plagiarism ScreeningCompleted
Research Integrity CheckVerified
DOI StatusReady
Metadata QualityMachine-Readable Metadata
Google Scholar CompatibilityMetadata Compatible
Schema.org MetadataImplemented
Dublin Core MetadataImplemented
Version StatusVersion of Record
Correction StatusNo Correction Issued
Retraction StatusNot Retracted
Access ModelOpen Access
LicenseCreative Commons CC BY 4.0
Publication EthicsCOPE Aligned
Archiving StatusLong-Term Preservation Enabled
Chat with Editor