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Consulting education in modern land use planning
2014
Kalna-Dubinyuk, T., National Univ. of Life and Environmental Sciences of Ukraine, Kiev (Ukraine) | Isachenko, A., State Univ. of Land Use Planning, Moscow (Russian Federation)
Consulting is a catalyst for scientific and technological progress in agriculture, promotes the dissemination of new knowledge, and is quite reasonable and necessary in the current socio and economic conditions. Organization of a system of land use planning - one of the main areas of regulation of land relations in the ongoing land reform. Training of specialists in the field of land use planning should include consulting and component for diffusion of innovation in achieving sustainable development of territories and effective use of agricultural land. The article concentrates on experience in consulting education at the National University of Life and Environmental Sciences of Ukraine and its using based State University of Land Use Planning in Moscow.
显示更多 [+] 显示较少 [-]Meteorology monitoring of the precipitable water vapour distribution in the atmosphere based on operational GNSS data processing at reference station network ZAKPOS
2014
Savchuk, S., Lviv Polytechnic National Univ. (Ukraine) | Kablak, N., Uzhhorod National Univ. (Ukraine) | Kalynych, I., Uzhhorod National Univ. (Ukraine) | Reity, O., Uzhhorod National Univ. (Ukraine)
Remote monitoring of the atmosphere is designed to obtain information about the state of the atmosphere. The principle of the remote monitoring system of the atmosphere is based on the registration and processing of spacecraft radio signals of the Global Navigation Satellite Systems (GNSS). The wet tropospheric delay component of the electromagnetic signal (Δρ sup(tropo) sub(w)), which is derived from the GNSS observations data analysis, is used to calculate the water vapour content in the atmosphere. It is well known, that this parameter is critical to meteorologists, because the water vapour content in the atmosphere is a key parameter in the construction of numerical weather modelling. In this article the IWV - Integrated Water Vapour has been estimated and the expected accuracy of its determination on the basis of the operational GNSS data processing from reference station network ZAKPOS and the results of aerologic sensing of the atmosphere are given.
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