降溫灌溉 的英文怎麼說

中文拼音 [jiàngwēnguàngài]
降溫灌溉 英文
refreshing irrigation
  • : 降動詞1. (投降) surrender; capitulate 2. (降伏) subdue; vanquish; tame
  • : Ⅰ形容詞(不冷不熱) warm; lukewarm; hot; gentle; mild Ⅱ名詞1 (溫度) temperature 2 (瘟) acute ...
  • : Ⅰ動詞1 (輸水澆土) irrigate 2 (倒進去; 注入) pour in; fill 3 (飲酒; 勉強他人飲酒) drink wine...
  • : 動詞[書面語]1. (澆水) supply with water 2. (洗滌) cleanse; wash
  • 降溫 : 1 (降低溫度) lower the temperature (as in a workshop); cooling; hypothermia; hypothermy 2 [氣...
  • 灌溉 : irrigate; irrigation; watering
  1. In recent years, the water - saving and control irrigation technique of rice has diverted from plot experimental and demonstration to lare scale. and has got remarkable economic and social benefits. amed at the characteristics of this irrigation area, optimal selection for water - saving techniques of rice, deciding the amout of leaching water and irrigation modles, investigating the adaptability of the water - saving and control irrigation technique in saline land. studying the increase in production mechanism of the technique are important to extend the technique, to better and develop saline land as well as slick spots. according to the results of field experiments, optimization study was conducted on the water - saving irrigation technique of rice in saline land, the effects of different water - saving irrigation techniques on the physiological indexes and yield of rice were systematically analyzed. by using mutiplepurpose fuzzy optimization method, better. water - saving irrigation technique was selector out, that is. the control irrigation technique in rice. the mechanism of it was analyzed from the aspect of the physiological and ecological saving water of rice to provide the implemental process and technical point ; throgh the quantitive analysis and comparision on control irrigation and control class ( flood irrigation ), high production and quality mechanism of the technique was analyzed in terms of physiology indexes of rice, the variation of soil moisture, the pest resistance and the lodge resistance, the change of soil temperature in paddy fields. the yield constitutive factors, the quality of rice and so on. in saline land. control irrigation and intermittent leaching modles were adopted to validate the adaptability of the technique in irrigation of rice in saline land, to analyze rice ' s physiological - ecological indexes and the change of soil salt content under the conditions of control irrigation leaching of rice and and to provide control irrigation and combined modle of intermittent leaching to adapt to different conditions

    本文從試驗及試驗資料入手,取得以下主要成果和結論:對鹽堿地水稻節水技術進行優化研究,系統地分析了不同節水技術對水稻生理指標及產量的影響,採用了多目標模糊優化的方法,對水技術進行綜合評判,優選了節水技術,論證該地區宜採用水稻控制技術;闡述控技術通過調節和控制水稻的需水規律,低水稻高產情況下的無效水量消耗,從水稻生理、生態節水兩方面分析了控技術節水機理,針對性地總結出水稻各生育期實施節水控技術的步驟及技術要點;通過控與淹的定量對照比較,從根系、莖蘗、冠層葉片及綠葉動態到株高,土壤水分變化,抗病蟲害、抗倒伏能力,稻田土變化,產量構成因素及稻米品質等諸多方面進行動態比較,分析控技術高產優質機理;在鹽堿稻地採用控制+間歇淋洗模式,跟蹤測試田間水鹽變化狀況,驗證控制技術在鹽堿地區水稻中應用的適應性,通過分析水稻控制淋洗條件下水稻生理生態指標,提出優化控制+間歇淋洗組合模式,為進一步在高礦化度地區試驗水稻控技術奠定基礎。
  2. 8 ndvi value in oasis is significantly higher than the value in desert, both of them have different rules in monthly variation. irrigation temperature and precipitation have effect on variation of ndvi in oasis, the correlation coefficients of sparse vegetation ndvi in desert with climatic and hydrological factors are insignificant and meaningless in practice. the drive factors of oasis ndvi are only adapted on oasis in arid land and are not fit to desert system in arid land

    8 、綠洲ndvi值顯著大於荒漠,二者具有不同的季節變動規律;、氣水是綠洲ndvi變化的驅動因子,荒漠稀疏植被ndvi與綠洲氣侯、水文因子相關不顯著或無實際意義;綠洲ndvi的驅動因子只適用於乾旱區的綠洲區域,而不適用於乾旱區荒漠系統。
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