## Abstract Replacement of water in a given hydrological component is one of the effects of the hydrological cycle. We introduce the concept of renewal time to express the rate of water replacement in a specific reach of a river. Based on streamβflow data from the 1990s, a simple formula is used to
Temporal variation of river flow renewability in the middle Yellow River and the influencing factors
β Scribed by Jiongxin Xu
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 198 KB
- Volume
- 19
- Category
- Article
- ISSN
- 0885-6087
- DOI
- 10.1002/hyp.5652
No coin nor oath required. For personal study only.
β¦ Synopsis
In the past 30 years, the measured annual river flow of the Yellow River has declined significantly. After adding the diverted water back to get the 'natural' annual river flow, the tendency of decrease can still be seen. This indicates that the river flow renewability of the Yellow River has changed. The river flow renewability is indexed as the ratio of annual 'natural' river flow to annual precipitation over a river drainage basin, where the 'natural' river flow is the measured annual river flow plus the annual 'net' water diversion from the river. By using this index, based on the data from the drainage area between Hekouzhen and Longmen stations on the middle Yellow River, a study has been made of the river flow renewability of the Yellow River in the changing environment of the past 50 years. The river flow renewability index (I rr ) in the drainage area between Hekouzhen and Longmen in the middle Yellow River basin has been found to decline significantly with time. In the meantime, annual precipitation decreased, annual air temperature increased, but the area of water and soil conservation measures has been increased. It has been found that I rr is positively correlated with the areal averaged annual precipitation, but negatively correlated with annual air temperature. There is close, negative correlation between I rr and the area of water and soil conservation measures including land terracing, tree and grass planting and checkdam building, implying that water and soil conservation measures have reduced the river flow renewability.
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