

Sometimes a good location for a wind farm might be right on top of a Native American burial ground or something like that. Sometimes we even have to be archaeologists. We also have to be biologists and consider the affect of the wind farm on birds and other animals in the environment. We can't just plop a wind farm down in the middle of a town or a national park, for example. Then we have to think about how the land should be used. First, we have to be meteorologists and find good, windy locations. That's the term we use for big groups of wind turbines. So why is a wind energy scientist needed?Ī lot goes into planning a wind farm. A grid system of wires transports the electricity to homes, factories, stores, offices-wherever it is needed. The wind energy turns the blades of the wind turbines, which use that motion to generate electricity. We place wind mills, or wind turbines, as we call them, in windy places. I work on wind energy and ocean energy projects, especially wind energy. Tom, what do you do as a Renewable Energy Scientist? The page may contain broken links or outdated information, and parts may not function in current web browsers.Ī conversation with. Though accurate at the time of publication, it is no longer being updated. Finally, a discussion of the merits and limitations of GE is presented along with conclusions and remaining challenges.Disclaimer: This material is being kept online for historical purposes. These examples form the basis for highlighting current trends in remote sensing archaeology based on the GE platform, which could provide access to a low-cost and easy-to-use tool for communicating and sharing ACH geospatial data more effectively to the general public in the era of Digital Earth. The selected case studies illustrate how GE can be used effectively to investigate ACH at multiple scales, discover new archaeological sites in remote regions, monitor historical sites, and assess damage in areas of conflict, and promote virtual tourism. In this review, in order to discuss the huge potential of GE, a comprehensive review of GE and its applications to ACH in the published scientific literature is first presented case studies in five main research fields demonstrating how GE can be deployed as a key tool for studying ACH are then described. Based on geographical tools and multi-temporal very high-resolution (VHR) satellite imagery, GE has been shown to provide spatio-temporal change information that has a bearing on the physical, environmental, and geographical character of ACH.

GE can often be used to survey and document ACH so that both skilled archaeologists and the public can more easily and intuitively understand the results. Most of these concern specific ACH investigations with a wide spatial coverage. In the past decade, many peer-reviewed articles on the use of GE in the archaeological cultural heritage (ACH) research field have been published.
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Different from traditional geographical information systems (GIS), GE is free and easy to use in data collection, exploration, and visualization. It enables archaeologists around the world to communicate and share their multisource data and research findings. Google Earth (GE), a large Earth-observation data-based geographical information computer application, is an intuitive three-dimensional virtual globe. A very precise description of NASA World Wind Java SDK as a technology being extensively used in application's development is convened as well. Even though the main part of the thesis is connected to the application, its work ow and methodology, a sucient interest is also given to a research on the literature describing the terms Digital Earth and Virtual Globe as both of the terms are very closely related to each other. About every site, data is collected and then displayed in a user-friendly and logical way with an extensive use of geovisualization methods. The research is maintained by developing Great Places WikiGlobe, an application incorporating 100 Great Places of History according to the book Great Places of History: Civilization's 100 Most Important Sites: An Illustrated Journey, published by TIME. It has its own SDK, which is based on NASA World Wind Java SDK, a technology for displaying 3D virtual globe. WikiGlobe project can be seen as "Wikipedia on Digital Globe" and its purpose is to merge 3D virtual globe with di erent kinds of information, such as text, audio recordings or video. Weng Jingnong from the College of Software. The main goal of the thesis is to conduct a research on geovisualization methods and technology of the WikiGlobe system, a project developed at Beihang University by a team of GIS software-specialized students under the guidance of Prof.
