Modelling the freshwater supply of cisterns in ancient Greece
Bibliographic Data
| ID | 12962613 |
|---|---|
| Authors | Patrik Klingborg (0000-0002-2146-3659, Uppsala University, corresponding author), Martin Finné (0000-0001-7433-268X, Uppsala University) |
| Year | 2018 |
| Volume | 10 |
| Issue | 2-3 |
| Pages | 113-131 |
| Publication date | 2018-01-18 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Water History (JOURNAL) |
| Journal identifiers | ISSN: 1877-7236 • E-ISSN: 1877-7244 |
| Publisher | Springer Science+Business Media (PUBLISHER • DE) |
| DOI | 10.1007/s12685-017-0209-y |
| OpenAlex | W2784206337 |
| Language | EN |
| Citations received | 11 |
| References cited | 26 |
In this paper, we model the function of rainwater harvesting cisterns in ancient Greece. The model calculates on a monthly basis: (1) the collected and stored volume of water; (2) the amount of water extracted for individual use; and (3) the potential accumulated surplus available by the end of a month. The potential of the model is explored through two case studies based on material from Olynthos in Thessaly and Dystos on ancient Euboia by running 26 consecutive annual cycles utilizing modern precipitation data from meteorological stations as a proxy for ancient precipitation and precipitation variability. Our results show that cisterns can provide ample amounts of freshwater to households and function as buffers for water stress in shorter (monthly), and longer terms (seasonally, yearly and between years). The two cisterns in this paper yield between 10.7 and 86.6 m3 per annum with a strong variability in collected water volumes within and between years. Yet, this variability is, largely predictable and thus the use of cisterns in ancient Greece should be viewed in the light of predictable variability that required active participation from members of the household to be efficient
Archaeology · Biology · Cistern · Geography · Geotechnical engineering · Hydrology (agriculture · Meteorology · Precipitation · Proxy (statistics · Rainwater harvesting · Statistics · Environmental Science · Historical and Architectural Studies · Maritime and Coastal Archaeology · Mathematics · Water management and technologies · Ecology · Geology
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| Unique citing works | 11 |
|---|---|
| Citations per year | 2,2 |
| Citation span | 2021 - 2026 (6) |
| Citation velocity | current |
| Highly cited | No |
| Citation types | Neutral: 11 |