Evolution of Tunneling Hydro-Technology: From Ancient Times to Present and Future

Author:

Angelakis Andreas N.12ORCID,Passchier Cees W.3ORCID,Valipour Mohammad4,Krasilnikoff Jens A.5,Tzanakakis Vasileios A.6,Ahmed Abdelkader T.78ORCID,Baba Alper9ORCID,Kumar Rohitashw10ORCID,Bilgic Esra11ORCID,Capodaglio Andrea G.12ORCID,Dercas Nicholas13

Affiliation:

1. School of History and Culture, Hubei University, Wuhan 430061, China

2. National Foundation for Agricultural Research, Institute of Iraklion, 71307 Iraklion, Greece

3. Institute Geosciences, University of Mainz, 55128 Mainz, Germany

4. Department of Engineering and Engineering Technology, Metropolitan State University of Denver, Denver, CO 80217, USA

5. Department of History and Classical Studies, School of Culture and Society, Aarhus University, 8000 Aarhus, Denmark

6. Department of Agriculture, School of Agricultural Science, Hellenic Mediterranean University, 71410 Iraklion, Greece

7. Civil Engineering Department, Faculty of Engineering, Islamic University of Madinah, Medina 42351, Saudi Arabia

8. KSA & Civil Engineering Department, Faculty of Engineering, Aswan University, Aswan 81528, Egypt

9. Department of International Water Resources, Izmir Institute of Technology, Izmir 35430, Türkiye

10. College of Agricultural Engineering and Technology, SKUAST—Kashmir, Srinagar 190025, India

11. Department of Civil Engineering, Izmir Institute of Technology, Izmir 35430, Türkiye

12. Department of Civil Engineering & Architecture, University of Pavia, 27100 Pavia, Italy

13. Department of Natural Resources Management and Agricultural Engineering, Agricultural University of Athens, 11855 Athens, Greece

Abstract

Water tunnels are one of the oldest hydro-technologies for extracting water resources and/or transmitting them through water distribution systems. In the past, human societies have used tunneling for various purposes, including development, as a measure to enable underground resource extraction and the construction of transportation networks in challenging landscapes and topographies. The development of hydro-technology potentially involves the construction of tunnels to feed aqueducts, irrigation and waste water systems. Thus, the ability to make and maintain tunnels became an important component in creating lasting and sustainable water systems, which increased water supply and security, minimized construction costs, and reduced environmental impact. Thus, this review asks how, when and why human societies of the past included tunneling for the development of lasting water supply systems. This review presents a comprehensive overview across time and space, covering the history of tunneling in hydro technology from antiquity to the present, and it ponders how past experiences could impact on future hydro-technological projects involving tunneling. A historical review of tunnel systems enhances our understanding of the potential, performance, challenges, and prospects associated with the use of hydro-techniques. In the past, as the different examples in time and space demonstrate, tunneling was often dedicated to solving local problems of supply and disposal. However, across the world, some features were repeated, including the need for carving through the living rock or digging to create tunnels covered with stone slabs. Also, the world-wide use of extensive and costly tunnel systems indicates the high level of investment which human societies are willing to make for securing control over and with its water resources. This study helps us to gather inspiration from proven technologies of the past and more recent knowledge of water tunnel design and construction. As we face global warming and its derivate problems, including problems of water scarcity and flooding, the ability to create and maintain tunnels remains an important technology for the future.

Publisher

MDPI AG

Subject

Earth-Surface Processes,Waste Management and Disposal,Water Science and Technology,Oceanography

Reference137 articles.

1. Hydrogeological characteristics of Hellenic aqueducts-like Qanats;Voudouris;Water,2013

2. Sustainability of ancient water supply facilities in Jerusalem;Barghouth;Sustainability,2009

3. Historical and technical notes on aqueducts from prehistoric to medieval times;Angelakis;Water,2013

4. Climate variability and evolution of the Indus civilization;Dutt;Quat. Int.,2019

5. (2023, September 07). Mumbai Metro Rail Corporation Limited. (n.d.). Metro Line 3—Colaba-Bandra-SEEPZ, Mumbai, India. Available online: https://www.railwaygazette.com/infrastructure/mumbai-metro-line-3-breaks-ground/43391.article.

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