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81.
玉米热风干燥中对流换热系数和当量导热系数的确定   总被引:1,自引:0,他引:1  
以玉米作为热风干燥物料,在垂直热吹风干燥实验中,建立了干燥速率与对流换热系数的关系式。提出了由干燥速率来确定热风与玉米的对流换热系数,进而求取厚层玉米当量导热系数的实验方法  相似文献   
82.
“Close-to-nature forest stands” are one central key in the project “Future oriented Forest Management” financially supported by the German Ministry for Science and Research (BMBF). The determination of ecological as well as economical consequences of mechanized harvesting procedures during the transformation from pure spruce stands to close-to-nature mixed forest stands is one part of the “Southern Black Forest research cooperation”. Mechanical operations of several typical forest harvesting vehicles were analysed to examine the actual soil stresses and displacements in soil profiles and to reveal the changes in soil physical properties of the forest soils. Soil compaction stresses were determined by Stress State Transducer (SST) and displacement transducer system (DTS) at two depths: 20 and 40 cm. Complete harvesting and trunk logging processes accomplished during brief 9-min operations were observed at time resolutions of 20 readings per second. Maximum vertical stresses for all experiments always exceeded 200 kPa and at soil depths of 20 cm for some vehicles and sequences of harvesting operations approached ≥500 kPa. To evaluate the impacts of soil stresses on soil structure, internal soil strengths were determined by measuring precompression stresses. Precompression stress values of forest soils at the field sites ranged from 20 to 50 kPa at soil depths of 20 cm depth and from 25 to 60 kPa at soil depths of 40 cm, at a pore water pressure of −60 hPa. Data obtained for these measured soil stresses and their natural bearing capacities proved that sustainable wheeling is impossible, irrespective of the vehicle type and the working process. Re-occurring top and subsoil compaction, increases in precompression stress values in the various soil horizons, deep rut depths, vertical and horizontal soil displacements associated with shearing stresses, all affected the mechanical strengths of forest soils. In order to sustain naturally “unwheeled” soil areas with minimal compaction, it is recommended that smaller machines, having less mass, be used to complete forest harvesting in order to prevent or at least to maintain currently minimal-compacted forest soils. Additionally, if larger machines are required, permanent wheel and skid tracks must be established with the goal of their maximum usefulness for future forest operations. A first step towards accomplishing these permanent pathways requires comprehensive planning with the Federal State Baden-Württemberg. The new guideline for final opening with skid tracks (Landesforstverwaltung Baden-Württemberg, 2003) proposes a permanent skid track system with a width of 20–40 m.  相似文献   
83.
科尔沁沙地乌兰敖都地区最高和最低气温的变化趋势   总被引:1,自引:0,他引:1  
利用线性趋势分析方法初步分析了近25 a(1981-2005年)乌兰敖都地区逐月平均气温、平均最高气温、平均最低气温、02时平均气温、14时平均气温5个气温序列的变化趋势和特征。结果表明:近25 a来乌兰敖都地区的5个气温序列均呈非连续的增加趋势;平均最高气温线性增加率最高(0.78℃/10 a),是平均最低气温线性增加率(0.14℃/10 a)的5.6倍;平均最高气温、平均最低气温各季均为升高趋势;春季增温最明显,秋、夏、冬季的增温程度依次减小;白天气温增加幅度高于夜间,表现出明显的不对称性。  相似文献   
84.
研究了高温胁迫条件下香根草相对含水量、膜透性、脯氨酸和叶绿素含量的变化规律。结果表明:25~40℃处理24 h后香根草的膜透性、脯氨酸含量逐渐上升,相对含水量、叶绿素含量逐渐下降,但幅度不大;40℃以上高温处理后,以上生理指标均有显著变化。与常温25℃比较,温度每升高5℃,膜透性、脯氨酸含量平均增加27.5%和86.0%,而相对含水量和叶绿素含量分别下降5.5%和10.1%。在试验条件下,香根草生长的最适温度为25~35℃,45℃为临界温度上限,55℃为致死温度上限。  相似文献   
85.
广西贺州地区温室内空气湿度时空变化研究   总被引:7,自引:0,他引:7  
以温室为研究对象,探讨研究了晴天、阴天、雨天3种不同类型天气条件下温室内空气相对湿度与绝对湿度的日周期时空变化规律以及整个冬季空气相对湿度与绝对湿度的时空变化规律。为合理调控温室内空气湿度以控制作物病虫害、提高产量和改善品质提供科学依据。  相似文献   
86.
根据温室能量和质量平衡的物理学原理,建立了一个以温室外气候条件(太阳辐射、温度、湿度、风速等)为驱动变量,以温室结构、温室覆盖材料、温室内作物(高度、叶面积指数)为参数的温室小气候模拟模型,并利用上海Venlo型温室的三季试验数据对模型进行了检验。结果表明:模型能较好地预测中国长江中下游地区Venlo型温室内夏季和冬季空气温度、湿度以及作物蒸腾速率。模型对该地区夏干季节(2001年8月,三伏天)、夏湿季节(2002年6月下旬至7月中旬,梅雨季节)和冬季(2002年1月27日~2月5日)温室内空气温度、湿度以及作物蒸腾速率预测值与实际观测值的决定系数(R2)和标准误(SE)分别为:0.89,0.75,0.52;1.1℃,4.4%,0.040 g·m-2·s-1;0.80,0.84,0.77;1.5℃,4.4%,0.018 g·m-2·s-1;0.84,0.59,0.73;1.6℃,6.0%,0.012 g·m-2·s-1。该研究为进一步探讨温室环境的优化调控提供了理论依据和决策支持。  相似文献   
87.
The aim of this study is to quantify the variations of energy forestry production at different locations in south Sweden that can be expected because of variations in climate only. The growth of first‐year shoots of willow (Salix viminalis) is simulated by means of a model based on photosynthesis. The production is examined over a 15‐year period and at 13 different locations. The mean yearly stem production ranged between 10.0 tonnes of dry matter per hectare and year at Helsingborg and 6.5 tonnes per hectare and year at Hagshult. The yearly variation was within ±25 % for sites located in the inland areas while those at the coast generally showed variations within ±15%. On a regional basis, Skåne had the highest mean production with 9.4 tonnes per hectare and year while the production of the Mälardalen region was about 13% lower. The difference in production between Mälardalen and Östergötland was about 2%. A sensitivity analysis showed that the growth response of clones to temperature might be an important selection criterion when aiming at increasing the production.  相似文献   
88.
《Southern Forests》2013,75(2):67-71
The potential to propagate Uapaca kirkiana through air layering was investigated at Igumbilo forest, Tanzania. The objective was to determine the effect of time of setting air layers and use of indole-3-butyric acid (IBA) to promote rooting. Air layers were initiated on young shoots, 1-to 2-years old, growing on mature trees. After root initiation, they were detached, potted and reared at the nursery for a further three months. Thereafter they were harvested and assessed. Two factors were investigated: effect of time at which air layers were initiated (June, September and December), and influence of IBA at 50, 100 and 150 mg l?1concentrations. Varied rooting successes were realised, being influenced by time at which air layers were initiated, IBA concentration or both. Optimal rooting of 82.5% was realised in June-initiated air layers treated with 50 mg l?1 IBA. Air layers initiated in December and treated with the control had the poorest rooting (46.7%). Application of 100 mg l?1 IBA during June significantly improved the number of roots, root length and root biomass produced. The increase in rooting ability during June is partly linked to better nutritive status, since most plants at this time have sufficient food reserves acquired during the active photosynthetic rainy period of January–May. The period is also associated with minimal plant developmental activities such as budding and flushing, which are usually antagonistic to rooting. Thus, air layering is a potential technique to propagate U. kirkiana, and can contribute effectively to capture desirable traits rapidly disappearing because of ongoing deforestation and maintain the desired fruit tree attributes once attained. Further studies are recommended to determine its cost effectiveness in relation to other vegetative techniques.  相似文献   
89.
90.
以空气悬架为研究对象,构建带附加空气室空气悬架系统的1/4车辆振动模型,采用不依赖于被控对象精确数学模型的模糊控制策略,开发出空气悬架刚度可调的软件控制单元。  相似文献   
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