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增温的 的英文翻译、例句

增温的

基本解释 (translations)
calefacient  ·  calescent

更多网络例句与增温的相关的网络例句 [注:此内容来源于网络,仅供参考]

Boreal forest becomes one of the zones most significantly influenced by global climate change.

北方针叶林地处北半球中高纬度地区,增温剧烈,是受气候变化影响最显著的地区之一。

Economy and society can develop the main goal that is complete mankind continuously , also be to be in China ceaseless calefacient is popular topic .

经济与社会可持续发展是全人类的重要目标,也是在中国不断增温的热门话题。

Some geoscience experts put forward a subject of "past global change"to settle the problem that what change will occur in the earth surface environment under the durative influence of the greenhouse effect. The subject is expected to provide a reference system to forecast the future global change through the study on the typical Quaternary climate gyration, especially the study on the climatic environment pattern of the calefacient period.

为了研究在温室效应的持续影响下,未来增温时期的地球表面环境会出现何种改变,一些地球科学家提出了"过去全球变化"的研究课题,以期通过对第四纪时期典型的气候旋回(冷-暖和干-湿的交替变化),特别是增温期的气候环境格局的研究,为预测未来的全球变化提供一个参照体系。

Using heating wire in the tunnel, the heating effect is better than that of covering.

在小棚内使用空气加热线的增温效果比单纯覆盖措施效果好。

Results showed that the temperature changes caused by irrigation in field was below 40 cm of rice plant, and heating effect was significant at 20 cm, as increased by 3.1℃.

结果表明,灌水的有效增温高度在株高40 cm以内,以20 cm处最为显著,平均可达3.1℃。

At the location of the south polar vortex for the normal year, the mixing ratios of O3 and CH4 increased, HCl and NO decreased, but NO2 and H2O did not accord with a given rule at all altitudes over Antarctica in 2002, which was related to the change of the vortex and the dynamical transportation after the SSW, and affected by the reduced polar stratospheric clouds and weakened processes of heterogeneous chemistry.

通过比较还发现,在通常年份极涡所处的位置上,2002年O3和CH4的混合比有所增加,HCl和NO的混合比有所减少,而NO2和H2O在不同高度上的变化特点不同。这与爆发性增温之后极涡和动力输送的变化有关,同时由于增温导致极地平流层云中相关冰相反应的减弱也是一个重要的原因。

The saving-water effect of Radish and Cabbage under PFM and appropriate irrigation,and the drought-resisting of radish seedling which seed was soaked by CaCl_2 were systematicly reseached by field observation and the experiment in door.The main results were summaried as follows:The soil temperature of 0~20cm cultivated layer was increased 3-4.5℃ in early growth period was only 1℃ in late growth period by PFM;there was more water saved up to 20.84mm in 0~60cm soil layer by PFM than no PFM in the early growth period of Radish;the yield and water use efficiency of Radish in L4 were exceeded respectively 10.1% and 21.9% of that contrast, the yield and water use efficiency of Cabbage in G4 were exceeded respectively 8.7% and 26.58% of that contrast, under PFM and appropriate irrigation.

主要研究结果如下:地膜覆盖在植株生长前期耕作层平均可增温3~4.5℃,在生长后期增温幅度减小,仅有1℃左右;地膜覆盖在植株生长前期可有效的保持土壤水分,在萝卜生长前期,使0~60cm土层内多储水20.84mm;在覆膜不灌水充分利用自然降雨的条件下生产萝卜,可比裸地正常灌水萝卜增产10.1%,水分利用效率提高21.9%;覆膜只浇一水生产甘蓝,可比裸地正常灌水生产甘蓝增产8.7%,水分利用效率提高26.58%。

Significant effects of warming onbiomass allocation were only found for the A. faxoniana seedlings grown under lowlight conditions, with significantly increased in leaf mass ratio and decreasedin R/S in responses to warming manipulation. The carbon allocation responses of B.albo-sinensis seedling to warming under full light conditions were similar with theresponse of A. faxoniana seedlings grown under low light conditions. Warmingsignificantly decreased root mass ratio, and increased leaf mass ratioand shoot/root biomass ratio for the B. albo-sinensis seedlings grown under fulllight conditions.

无论在全光或林下低光环境下,增温都促使云杉幼苗将更多的生物量分配到植物地下部分,从而导致幼苗在增温条件下有更高的R/S比;增温仅在林下低光条件下促使冷杉幼苗将更多的生物量投入到植物叶部,从而使幼苗R/S比显著地降低:增温在全光条件下对红桦幼苗生物量分配的影响趋势与冷杉幼苗在低光条件下相似,即增温在全光条件下促使红桦幼苗分配更多的生物量到植物同化部分一叶部。

It decreased at upper stratosphere during late and after warmings.

在2002/03年增温过程的后期和结束时平流层上层的水汽体积混合比较增温初期减小。

The purpose of this paper is to investigate the mechanism of the SSW by means of nonlinear methods.

本文的目的就是利用非线性方法,研究冬季平流层增温的动力学机制。

更多网络解释与增温的相关的网络解释 [注:此内容来源于网络,仅供参考]

Caleche:单马所拖的两轮篷车

caldronricepot 甑 | caleche 单马所拖的两轮篷车 | calefacient 增温物质

calefacient:增温的

Caledonian 古苏格兰的 | calefacient 增温的 | calefaction 加热

calefacient:变暖的

calefacient 增温物质 | calefacient 变暖的 | calefacientcalefactory 增温的

calefaction:加热

calefacient 增温的 | calefaction 加热 | calefactive 暖的

calefactory:增温的

calefactor /温暖器/ | calefactory /增温的/ | calefy /(使)变暖/

calefy:(使)变暖

calefactory /增温的/ | calefy /(使)变暖/ | calender /研光机/以研光机压光/

calenture:热带地方的热病/中暑

calentura /热病/ | calenture /热带地方的热病/中暑/ | calescence /渐增温/

calfskin:小牛的皮, 犊皮所制的革

calescence /渐增温/ | calfskin /小牛的皮/犊皮所制的革/ | calglucon /葡萄糖酸钙/

calescent:变热的增温的

calescence | 渐增温 | calescent | 变热的增温的 | calf carcass | 小牛胴体

thermosphere:增温层

re) C.增温层(Thermosphere) D.对流层(Troposphere) 2.大气层中的逆温层是: A.稳定状态 B.不稳定状态 C.中性稳定状态 D.正常状态 3.赤道无风带通常是: A.台风区 B.高压区 C.低压区 D.高低压交替出现区 4.我国中央气象局规定:海上台风警报及陆上台风警报发布的时间是: A.每隔八小时发布一次 B.每隔六小时发布一次 C.每隔四小