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用于農(nóng)林偵察的太陽能無人機設計

2019-06-09 08:39王鵬王子玖蔣金陽田夢嬌柳明
科技創(chuàng)新與應用 2019年7期

王鵬 王子玖 蔣金陽 田夢嬌 柳明

摘? 要:目前全球能源短缺、環(huán)境污染和溫室效應等問題越來越嚴重,大規(guī)模的開發(fā)新清潔能源將是未來發(fā)展趨勢,太陽能的利用轉(zhuǎn)換對于飛行器供能方式多樣化的研究具有重要意義,無人機偵察與監(jiān)測無疑對黃河三角洲農(nóng)林的偵察問題更加簡時省力,操作簡單、速度快、效率高,而太陽能飛機和固定翼飛機擁有其他無人機不可比擬的優(yōu)點。通過大展弦比的設計,自主設計針對黃河三角洲地區(qū)的機型并不斷改進飛機載重、機翼結構及總體布局,以減低誘導阻力,使機翼受到翼尖渦流小;創(chuàng)新性地增大太陽能板鋪設面積;出于配平和提供安放電池板的空間考慮,設計機頭比較長;降低雷諾數(shù),提高螺旋槳的效率;利用太陽能轉(zhuǎn)換鋰電池供電,增加航時航高,以實現(xiàn)太陽能無人機的應用;基于遙感和圖傳系統(tǒng),通過航線規(guī)劃設計,可以長時間地進行數(shù)據(jù)傳輸和圖像采集,實時對黃河三角洲農(nóng)林出現(xiàn)的生態(tài)環(huán)境污染和土地鹽堿化等問題進行長時間、有針對性的偵察和監(jiān)測,并且可以靈活執(zhí)行多種任務,將具有廣闊前景和應用范圍。

關鍵詞:太陽能轉(zhuǎn)換;大展弦比;農(nóng)林偵察;黃河三角洲地區(qū);鋪設面積;低雷諾數(shù)

中圖分類號:V221? ? ? ? ? 文獻標志碼:A? ? ? ? ?文章編號:2095-2945(2019)07-0008-05

Abstract: At present, the global energy shortage, environmental pollution and greenhouse effect and other problems are becoming more and more serious. The large-scale development of new clean energy will be the future development trend. the utilization and conversion of solar energy is of great significance to the study of the diversification of aircraft energy supply methods. There is no doubt that UAV detection and monitoring of agriculture and forestry reconnaissance in the Yellow River Delta is more time-saving and labor-saving, simple operation, high speed and high efficiency, while solar aircraft and fixed-wing aircraft have incomparable advantages over other UAVs. Through the design of large aspect ratio, the aircraft in the Yellow River Delta region is designed independently and the load, wing structure and overall layout of the aircraft are continuously improved in order to reduce the induced drag and reduce the vortex at the wing tip. Creatively increase the laying area of solar panels; in order to balance and provide the space for placing panels, the design nose is longer; the Reynolds number is reduced and the efficiency of the propeller is improved; the solar energy is used to convert lithium battery power supply to increase the altitude during navigation. Based on remote sensing and graphic transmission system, data transmission and image acquisition can be carried out for a long time through route planning and design. In real time, the ecological environment pollution and land salinization in the Yellow River Delta will be investigated and monitored for a long time, and a variety of tasks can be carried out flexibly, which will have broad prospects and application scope.

Keywords: solar energy conversion; large aspect ratio; agroforestry reconnaissance; Yellow River Delta region; laying area; low Reynolds number

1 概述

1.1 背景