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1)  high shelf
高棚层架
1.
The above results lay a foundation for year-round cultivation of summer Huagu by means of high shelf.
结果表明 :选用中偏高温香菇菌种武香 1号 ,利用高棚层架栽培模式 ,同时采取优化管理措施可收到较大的经济效益 ,为周年栽培花菇打下基
2)  double-layer trellis
双层棚架式
1.
The photosynthetic characteristics of seven cultivars of Japanese pears(Pyrus pyrifolia Nakai) in double-layer trellis training and pruning were studied by Li-6400 portable photosynthesis system.
以双层棚架式栽培条件下的7个日本梨(Pyrus pyrifolia Nakai)品种为试材,采用Li-6400便携式光合作用测定系统,对各品种的光合特性进行了比较研究,结果表明,日本梨品种喜水、新高、清澄为光合能力和干物质积累能力较高、水分需求量较多的类型,秋荣较低,筑水、幸水、丰水的光合能力和水分消耗都属中等,而秋荣属于光合能力和水分消耗均较低的类型。
3)  Ceratostigma minus
架棚
1.
Fourteen phenolics were isolated from the whole plant of Ceratostigma minus Stapf ex Prain.
从架棚(CeratostigmaminusStapfexPrain)的乙酸乙酯部分分离得到14个酚类化合物。
2.
From ethanol extracts of Ceratostigma minus,a new compound maltol-O-glucoside(1),along with five known compounds plumbagin(2),quereetin(3),myrieetin(4),qereetin 3-O-glucoside(5)and myrieetin 3-O-rhamnoside(6),have been isolated and their struc-tures were elucidated on basis of spectral data and chemical evidences.
从架棚(CeratostigmaminusStapfexPrain)的乙酸乙酯部分分离鉴定了3个已知化合物,蓝雪醌(plumbagin)(2),槲皮素(quercetin)(3)和杨梅黄素(myricetin)(4)。
4)  Trellis trained
棚架
1.
Many Fruit Quality and Photosynthesis in Leaves of Trellis and spindle trained‘Whangkeumbae’were studied, such as key cultivation on trellis trained‘whangkumbae’and relationship between the cultivation and photosynthesis in leaves of trellis trained‘Whangkeumbae’,to provide guidance for cultivation of Trellis trained‘Whangkeumbae’.
Whangkeumbae)为研究对象,主要进行了黄金梨棚架栽培关键技术研究,并进一步研究棚架树形与纺锤树形以及棚架栽培技术措施对黄金梨果实品质、叶片光合作用的影响,以期为黄金梨棚架栽培生产提供理论依据及技术指导。
5)  shelving [英]['ʃelvɪŋ]  [美]['ʃɛlvɪŋ]
架设棚架
6)  tall frames
高层框架
1.
Beams and columns are main load-bearing structure of tall frames in high buildings.
高层建筑中的高层框架结构体系采用梁、柱作为建筑的承重结构。
2.
This paper studied the material nonlinear problems, geometric nonlinear problems and double nonlinear problems, which includes both material and geometric nonlinear problems, of tall frames.
本文研究高层框架的材料非线性问题、几何非线性问题及双重非线性问题,即既含材料非线性问题又含几何非线性问题,先利用QR法建立非线性问题的刚度方程,然后利用增量迭代法求解非线性刚度方程,并用C语言编制计算程序,计算了一些例题。
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