Q1 2026

A strategic mathematical model for smart water meter deployment in Saudi Arabia: Optimizing regional impact on water and carbon emission savings

Hafiz Abdul Wajid
10.25259/jksus_1580_2025 399 المشاهدات 0 الاقتباسات
0
الاقتباسات
399
المشاهدات
الملخص


Saudi Arabia has launched a nationwide Smart Water Metering (SWM) initiative addressing the critical challenge of water scarcity directly supporting the water sustainability goals of Saudi Arabian Vision 2030. This study develops a mathematical model for estimation of water consumption along with associated carbon footprint nationwide, across regions and demographic (Saudi and non-Saudi household) segments. Also, it demonstrates that water savings and carbon emissions reduction potential depends on two interdependent parameters such as user adoption rate and water system efficiency. The results reveal that conservational gains are mainly concentrated in regions of Riyadh, Makkah, and the Eastern Province accounting for 56% of total for Saudi households and 72% for non-Saudi households. Consequently, uniform nationwide rollout is identified to be extremely inefficient. Sensitivity analysis of scaled adoption rate from 25% to 100% shows that nationwide monthly water savings triples from 5.71 to 22.85 million m
3
for Saudi households and from 2.19 to 8.76 million m
3
for non-Saudi households respectively with proportional tripled carbon emission reductions. Similarly, increasing system efficiency from 70% to 90% results in a 42% conservational potential for both segments, highlighting the importance of quality water infrastructure. Finally, the Strategic Impact Matrix (SIM) combines these findings and shows that only the synergistic combination of high adoption rate and high system efficiency unlocks full conservational potential yielding around 4.6 times the water savings of the worst-case scenario. Also, it is found that partial strategies achieve only 8-72% of the full conservational gains. Consequently, a prioritized phased rollout of SWM is recommended. Phase 1 should target Saudi households in three high-impact regions covering Riyadh, Makkah, and the Eastern Province to achieve rapid and scaled outcomes. Phase 2 should target non-Saudi households covering same three regions leveraging population density for additional scaled impact. The approach of this study provides a replicable framework for maximizing water security, financial viability, and climate resilience for other regional contexts. Also, this study directly contributes to United Nations Sustainable Development Goals (UN-SDGs) Targets of 6.4 and 13.2.

الاستشهاد بهذا المقال (APA)
Hafiz, A. W. (2026). A strategic mathematical model for smart water meter deployment in Saudi Arabia: Optimizing regional impact on water and carbon emission savings. Journal of King Saud University – Science. https://doi.org/10.25259/jksus_1580_2025
أبحاث ذات صلة
Short-term wind power prediction based on IBOA-AdaBoost-RVM
Yongliang Yuan; Qingkang Yang; Jianji Ren; Kunpeng Li; Zhenxi Wang; Yanan Li; Wu · 2024
33
استشهاد
402
A parametrized approach to generalized fractional integral inequalities: Hermite–Hadamard and Maclau…
Abdelghani Lakhdari; Bandar Bin-Mohsin; Fahd Jarad; Hongyan Xu; Badreddine Mefta · 2024
20
استشهاد
397
Modulatory effects of glutamic acid on growth, photosynthetic pigments, and stress responses in oliv…
Muhammad Hamzah Saleem; Sadia Zafar; Sadia Javed; Muhammad Anas; Temoor Ahmed; S · 2024
19
استشهاد
401
Cloud spot instance price forecasting multi-headed models tuned using modified PSO
Mohamed Salb; Luka Jovanovic; Ali Elsadai; Nebojsa Bacanin; Vladimir Simic; Drag · 2024
17
استشهاد
401
16
استشهاد
403
الوصول
عرض النص الكامل عبر DOI
نُشر في
الرقم الدولي ISSN 1018-3647
الربعية Q1
درجة المؤشر القياس العربي 100
التخصص Natural Sciences
الناشر King Saud University
الدولة 🇸🇦 Saudi Arabia
عرض ملف المجلة →
المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 24 Jul 2026