The use of GIS and remote sensing to prepare management and planning of natural resources of the geography is widely acknowledged. Progress in these technologies offers many advantages of taking a synoptic view of the natural resources, natural features at a glance to quicker planning and management of the end user related issues. This research work focuses on management of Natural resources used in water conservation, such as primarily drainage development, watershed evaluation and its characterization, harnessing the morphometric parameters of the topography. It's helpful in management of drought affected area and agriculture practices; finally enhances water tables and the requirement of water for food production ultimately full filled. The results were obtained with a DEM 90m resolution and Toposheets data set reveals out that the watershed area was 204 sq.km. There were total 51 number of streams with cumulative stream length has 99.84 km, drainage density has 0.48, form factor has 0.19, circulatory ratio has 0.2, elongation ratio has 0.05 and bifurcation ratio has 2.73 of the characteristics of given basin topography.
This Research is going to explore innovative ways for Site Evaluation and Potential Assessment to utilize sunlight hitting rooftop extent for green energy potential and agriculture practices. It may intend to green energy, green roofs and water harvesting as per extent area. In this scenario, it is essential to estimate the existing open flat roof surface with full sun on it, hitting light but absolutely no utilization of the surface. The investigation of the urban rooftop extent based on geospatial technology an extensive roof top for solar potential assessment and as to establishing a benchmark for a multifunctional system within one surface area at household level. Those are green energy potential, water harvesting and agriculture practices. A new term Agrivoltaics practice at household level an Agrivoltaics is the process of farming crops under shade of the solar system. In this scenario an Agrivoltaics is an approach for the cultivation of vegetables or portable agriculture system installation at urban rooftop. In this research a major focus on evaluation of site estimation, quantification and potential measure analysis similarly to interpret the role of technology in this scenario. This will be ensure the utilization of existing resources smartly as under stressed resources due to urbanization, population, industrialization and pollution. A specific convinced technology can boost green energy, vegetable food generation, saving water, healthy environment and major effectiveness for the solar energy potential assessment and generation truthfulness can be extended.
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