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Positioning Structural Height Restrictions An Implication from Geo Observation Data around a Proposed Airport, Ido-Osun, Southwestern Nigeria

机译:定位结构高度限制从尼日利亚西南部德奥 - 奥伦的地理观测数据涉及地理观测数据

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Geospatial data has been applied for positioning structural height restriction around the proposed MKO Abiola international Airport in Ido-Osun, Osun State. The study aimed at using geovisualisation method for guiding structural height restriction around the airport. In Nigeria, there is a growing demand for Airports and safety is paramount to aviation industry as calamity is irreversible. In respect of this, precautionary measures are better emplaced at inception to safeguard the industry as much as possible. For example, failure because of engine faults in flight cannot be completely erased, at least, planes hitting buildings due to either low altitude of the airplane or excessive height of structures could be totally abated. Data used for this study involved Geospatially acquired data obtained through primary and secondary methods. The data were processed and a 2km buffer zone was created around the proposed airport for analysis. Modelling of the study was done to relatively decipher the height relationship between the airport runway and the buffer zone. Hypotenuse theorem was used and available data, airplane altitude along various directions were calculated in relation to the mean sea level through which proposed heights restrictions were made for structures within the buffer zone in the study area. It was scientifically deduced that using of only number of building ,floors and other structures, the height above earth surface are not enough to set such height restriction, instead, elevations of adjoining land should also be a striking factor taken into set structural height restriction aided by Geo observation data.
机译:地理空间数据已应用于在奥伦州IDO-OSUN中提出的MKO Abiola国际机场周围定位结构高度限制。该研究旨在利用地理化方法来引导机场周围的结构高度限制。在尼日利亚,对机场的需求不断增长,安全对航空行业至关重要,因为灾难是不可逆转的。就此而言,在成立中更好地申请预防措施,以尽可能保护该行业。例如,由于飞行中的发动机故障失败不能完全擦除,至少,由于飞机的低海拔或过度的结构高度而撞击建筑物的平面可以完全减少。用于本研究的数据涉及通过初级和辅助方法获得的地理空间获取的数据。处理数据并在拟议的机场周围创建2km缓冲区进行分析。研究的建模是为了相对破译机场跑道和缓冲区之间的高度关系。使用斜边定理和可用数据,沿着各种方向的飞机高度与平均海平面进行了计算,通过该平均海平面,通过该平均海平面进行了研究区域中缓冲区内的结构的结构。它科学推导出使用的建筑物,地板和其他结构的数量,地球表面上方的高度不足以设定这种高度限制,相反,相邻的土地的高度也应该是一个引人注目的因素,进入设定结构高度限制辅助通过Geo观察数据。

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