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1.
Thyme ( Thymus vulgaris L.) plants were spaced at 15, 30 or 45 cm distances in a clay-loamy soil. They received different levels of nitrogen and phosphorus, besides a constant level of potassium. The results showed, that the wider spacing promoted the growth and production of herb and oil per plant, however dense cultivation significantly increased the yields of herb and oil per unit area. In all cases, the applied fertilization treatments significantly increased the productivity per unit area. Dense cultivation accompanied with higher levels of fertilization proved to be very usefull. The essential oil content was not influenced by either the plant spacing or fertilization treatments applied in this study.  相似文献   
2.
草地振动式间隔松土机设计与试验   总被引:4,自引:1,他引:4  
针对我国草原长期过载放牧,造成土壤板结严重,导致草原退化的问题,设计了9ST-460型草地振动式间隔松土机.该机采用间隔配置的梯形框架式松土部件,利用曲轴连杆机构产生的向上激振力,对通过松土部件的土壤进行强制振动疏松,实现了在不破坏草原植被的条件下,对高坚实度草原土壤的松土作业.田间试验表明:机具在前进速度1 m/s、振动频率10.0 Hz情况下,作业稳定,松土效果明显.经检测,松土平均深度20.01 cm,松土比43.4%,植被破坏率1.6%,生产率0.85 hm~2/h,达到了技术要求.作业后土壤容积密度和坚实度平均降低了30.0%和48.8%,可以获得适合牧草生长的虚实并存的耕作层,提高了土壤的蓄水保墒能力,天然草地和人工草地牧草产量分别增产73.99%和68.65%.  相似文献   
3.
为了秋闲田饲用甜高粱丰产丰收,探索其高产栽培技术。采用列区试验设计与软件IBM.SPSS.Statistics.v22 的LSD法,对秋闲田饲用甜高粱的种植密度与播种行距进行了单株生产力及其草产量的比较试验。结果表明:种植密度与行距对秋闲田饲用甜高粱单株生产力、草产量均具有重要影响。明确了秋闲田饲用甜高粱高产配套栽培技术的优化组合:单株生产力最大的优化组合为A1B4,即种植密度为7.50 万株/hm2 与播种行距为40 cm 的配置;获得最高产量的优化组合为A2B4,即种植密度为22.50 万株/hm2与播种行距为40 cm的配置。研究结果为秋闲田种植饲用甜高粱的生产实践提了供理论依据和技术支撑。  相似文献   
4.

The effect of site fertility, spacing and mode of regeneration on the survival and stand development of lodgepole pine, Scots pine and Norway spruce was studied in a series of experiments comprising 22 study areas in Finland. After 13-14 yrs, lodgepole pine had a mean survival of 68% in planted and 61% in seeded plots, while Norway spruce had the highest (92%) and Scots pine the second highest survival (82%). The survival of planted lodgepole pine was better the wider the spacing. Best survival was achieved on subdry and dry sites, both with planting and with direct seeding. Dominant height was not affected by spacing, but both basal area and volume at the age of 13-14 yrs were significantly higher the denser the spacing. The average difference in the value of the estimated site index H 50 was slightly under 3 m for the superiority of lodgepole compared with Scots pine. Seeding resulted in site indices almost as high as those of lodgepole planting.  相似文献   
5.
穴播条件下株行距对紫花苜蓿种子产量和质量的影响   总被引:6,自引:1,他引:6  
在甘肃省酒泉市研究了穴播条件下不同株、行距处理对紫花苜蓿种子生产性能的影响,结果表明:在产种第一年(2004年)行距和株距对种子产量和产量构成因素均产生了显著的影响(P〈0.05),随着行距从60cm递增至100cm,种子产量也随之从1240kg/hm^2下降到982kg/hm^2,而各株距处理的种子产量则从15cm的1426kg/hm^2依次递减至60cm的807kg/hm^2;行距60cm和株距15cm组合的产量最高,为1833kg/hm^2,100cm行距和株距60cm组合的产量最低,为753kg/hm^2。株行距的增加显著降低了枝条密度,但结荚花序数/枝条和荚果数/结荚花序却显著提高。品种间种子产量的差异不显著。品种间的结荚花序数/枝条、种子重量、正常种苗率、发芽势和硬实率存在显著的差异(P〈0.05)。  相似文献   
6.
本文通过对9条分布均匀、相对较窄的不同疏透度(透光疏透度,下同)(0.13~0.33)的树木林带和不同疏透度(0.00~0.80)风障组合的野外风速观测,确定了树木林带和风障的最适疏透度分别为0.25和0.13。基于林带结构(疏透度)与风速降低的关系,确定了林带主带间距离的主要参数,即,林带结构系数(δ)和以主害风为代表的小气候参数(Lrp)。另外,通过对林带树木的野外调查,应用树木解析技术确定林带成林高(H0)。因此,树木林带的主带间距可以通过林带结构系数、希望降低风速的比例和树木生长模型来确定。本文以杨树林带为例,具体确定了杨树林带的主带间距。该研究结果不仅适于树木林带的设计,同时适于其它生物材料或人工风障的设计。图4表5参40。  相似文献   
7.
Relative windspeed reduction was measured behind nine relatively narrow, homogenous tree windbreaks with porosities between 0.13-0.33, and behind 28 combinations of model stubble barriers representing 25 different optical porosities (0.00-0.80). The optimum porosities observed were 0.25 and 0.13 for tree windbreaks and stubble barriers respectively. Based on the relationship between windbreak structure (optical porosity) and wind reduction, the chief indices for determining spacing interval, i.e., the windbreak structure index (δ) and the parameter of microclimate, represented by the problem wind (Lrp), were determined. Additionally, investigations on shelterbelt trees were carried out, and stem-analysis techniques were used, to develop a method for determining the mature height of tree windbreaks (H0). Optimal spacing intervals between windbreaks could be predicted from the indices of a given windbreak structure, percentage of reduction of windspeed desired and tree growth model. A hypothetical example for determining the spacing interval of principal poplar windbreaks is given at the end of this paper. The results can be applied not only to tree windbreak design but also to other plant materials and artificial barriers for wind protection.  相似文献   
8.
Relative windspeed reduction was measured behind nine relatively narrow, homogenous tree windbreaks with porosities between 0.13–0.33, and behind 28 combinations of model stubble barriers representing 25 different optical porosities (0.00–0.80). The optimum porosities observed were 0.25 and 0.13 for tree windbreaks and stubble barriers respectively. Based on the relationship between windbreak structure (optical porosity) and wind reduction, the chief indices for determining spacing interval, i.e., the windbreak structure index (δ) and the parameter of microclimate, represented by the problem wind (L rp ), were determined. Additionally, investigations on shelterbelt trees were carried out, and stem-analysis techniques were used, to develop a method for determining the mature height of tree windbreaks (H 0). Optimal spacing intervals between windbreaks could be predicted from the indices of a given windbreak structure, percentage of reduction of windspeed desired and tree growth model. A hypothetical example for determining the spacing interval of principal poplar windbreaks is given at the end of this paper. The results can be applied not only to tree windbreak design but also to other plant materials and artificial barriers for wind protection. Foundation item: This study was supported by Innovation Research Project of Chinese Academy of Sciences Biography: ZHU Jiao-jun (1965-), male, Ph. Doctor, PhD advisor. Professor of Institute of Applied Ecology, the Chinese Academy of Sciences, China, Scholar researcher of Faculty of Agriculture, Niigata University, Japan. Responsible editor: Song Funan  相似文献   
9.
The United States Department of Agriculture (USDA) Forest Service celebrated the 100th anniversary of its network of experimental forests in 2008. For a century, the network of experimental forests have contributed immensely—both in the US and around the world—to the practical understanding of the environment and to the formation of management approaches and policies that affect our use of forests and the natural resources they contain. Experimental forests provide places for long-term science and management studies in major vegetation types across the 789,140 km2 of public land administered by the Forest Service. They also provide an incredible wealth of records and knowledge of environmental change in natural and managed forest ecosystems across the United States. Pringle Falls Experimental Forest (Pringle Falls), southwest of Bend, Oregon, is the oldest experimental forest in the Pacific Northwest and is the site of some of the earliest forest management and silviculture research in this region. Research at this site began in 1914, and it was formally established as part of the national network of experimental forests in 1931 as a center for silviculture, forest management, and insect and disease research in ponderosa pine forests east of the Oregon Cascade Range. As part of the celebration of the Centennial Anniversary of the network of experimental forests, it is timely to examine a few of the ecological lessons that have resulted from long-term studies at Pringle Falls. Two different yet interconnected themes are traced: (1) management of existing old-growth ponderosa pine; and (2) management of young or immature ponderosa pine. Examples of ecological lessons, drawn from long-term studies established or followed by James W. Barrett, Matt D. Busse, Patrick H. Cochran, Walter G. Dahms, F. Paul Keen, Ernest L. Kolbe, Edwin L. Mowat, William W. Oliver, Ram Oren, Chester T. Youngberg, and Jianwei Zhang illustrate how work at Pringle Falls has both pursued and influenced societal demands for forest management strategies, and how this trajectory has cycled back to the themes under which the experimental forest was first established. Finally, these two themes are integrated as drivers for new landscape-scale long-term research at Pringle Falls, designed to evaluate the effects of thinning and fuel reduction treatments on multiple, interacting forest stresses of fire, insects, wind, and climate change.  相似文献   
10.
株行距配置对玉米根系性状及产量的影响   总被引:5,自引:1,他引:4  
以郑单958为材料, 采用田间试验方法, 在50 025株/hm2、67 500株/hm2、100 050株/hm2密度下分别设两种株行距配置, 探讨增密条件下调控株行距配置对玉米根系性状及产量影响。结果表明, 3个种植密度下总体表现为小行距种植方式在0~60 cm土层内的根重密度、根长密度及根表面积密度均高于大行距处理。50 025株/hm2下吐丝期时0~60 cm土层内的根重密度和根长密度在两个株行距配置间差异显著(P<0.05), 两个株行距配置的根表面积密度在10叶展、吐丝期和吐丝后25 d差异显著(P<0.05);67 500株/hm2下不同时期两个株行距配置根重密度差异显著(P<0.05), 根长密度和根表面积密度在10叶展和吐丝后25 d差异显著(P<0.05);100 050株/hm2下, 两个株行距配置间根重密度和根长密度在10叶展和吐丝后25 d差异显著(P<0.05), 不同时期根表面积密度差异显著(P< 0.05)。同一密度下缩行增株后单株木质部伤流液体积增大, 根系供应能力增强, 产量增加, 50 025株/hm2、67 500株/hm2下产量分别提高了6.76%和4.89%。不同时期0~60 cm土层内根重密度、根长密度和根表面积密度与产量呈正相关, 其中10叶展时各根系性状均与产量呈显著正相关。  相似文献   
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