词条 | Hydrogeophysics |
释义 |
BackgroundThe field of hydrogeophysics developed out of a need to use minimally invasive methods for determining and studying hydrogeological parameters and processes. Determination of hydrogeological parameters is important for finding water resources, which is a growing need, and learning about water contamination, which has become relevant with the growing use of potentially hazardous chemicals. The methods and knowledge of geophysics had been developed for mining and petroleum industries, which involve consolidated subsurface environments with high pressure and temperature. Since the subsurface environments in hydrogeological studies are less consolidated and have low temperature and pressure, combining geophysics with hydrogeology was necessary to develop proper geophysical methods that work for hydrological purposes.[2] Traditional hydrogeological methods for characterizing the subsurface usually involved drilling and taking soil samples from the site, which can disturb the study site, cost too much time or money, or expose researchers and people to harmful chemicals and contaminants. They also only provide localized information, rather than the necessary field-scale information. Using geophysical methods and digital technology allows hydrogeologists to more quickly study hydrological characteristics on a larger scale with a lower cost and less invasive techniques. A Hydrogeophysics Advanced Study Institute was held at the Trest Castle in the Czech Republic in July 2002 and funded by NATO when they acknowledged the necessity for fully developed, minimally invasive procedures for investigating and monitoring hydrogeological processes and parameters in shallow subsurface conditions. The institute brought together geophysicists working in hydrogeological characterization with hydrogeologists interested in using geophysical methods and data for characterization. This group, plus other international researchers, discussed the possibilities and challenges of using geophysical methods for investigating hydrogeological parameters. They determined the main obstacles of hydrogeophysics are gaps in the knowledge and understanding of the correlation between hydrogeological parameters and geophysical characteristics, and difficulty in being able to integrate those different sets of information. One of the biggest challenges is using an organized, methodical, and efficient way to combine geophysical and hydrogeological data sets that measure different parameters over different spatial scales. This is the largest obstacle because the foundation of hydrogeophysics is integrating hydrogeology with geophysics.[3] MethodsThere are many different methods for determining subsurface properties and features that can be done from different locations/ proximities to the study sites:
ApplicationsGeophysics helps to learn about many hydrogeological matters such as:
These parameters are then used to investigate matters including searching for underground water resources, aquifer control or contamination from sea water or industrial sources, and storing harmful substances underground. Having a good measurement of these hydrogeological parameters helps to better understand water contamination transport and develop more sustainable water resources.[4] References1. ^{{cite web|title=Applied Geophysical Research|url=http://water.usgs.gov/ogw/bgas/research.html|website=USGS}} 2. ^1 {{cite book|last1=Rubin|first1=Yoram|last2=Hubbard|first2=Susan S.|title=Hydrogeophysics|date=2005|publisher=Springer|location=The Netherlands|isbn=9781402031014}} 3. ^{{cite journal|last1=Hubbard|first1=S.|last2=Rubin|first2=Y.|title=Study institute assesses the state of hydrogeophysics|journal=Eos, Transactions American Geophysical Union|date=17 December 2002|volume=83|issue=51|pages=602, 606|doi=10.1029/2002eo000412|bibcode=2002EOSTr..83..602H}} 4. ^1 {{cite journal|last1=Nwakwoala|first1=H.O.|last2=Udom|first2=G.J.|title=Hydrogeophysics: An Overview of General Concepts, Applications and Future Perspectives|journal=Scientia Africana|date=December 2008|volume=7|issue=2|pages=54–63}} 2 : Geophysics|Hydrology |
随便看 |
|
开放百科全书收录14589846条英语、德语、日语等多语种百科知识,基本涵盖了大多数领域的百科知识,是一部内容自由、开放的电子版国际百科全书。