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排序方式: 共有1114条查询结果,搜索用时 62 毫秒
1.
蒸压加气混凝土是一种新型的节能、环保墙体材料 ,它在基本建设中运用具有良好的综合经济效益和社会效益。这里以加气混凝土在建筑中的应用实例 ,从材料、施工、抹灰及存在的问题等方面论述了它的运用情况 ,可供有关设计和施工人员参考。 相似文献
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In Central Europe, various plant species including large-grain legumes and their mixtures are grown as catch crops, particularly between grains harvested early and subsequent summer crops. This article investigates the question of how soil structure in the topsoil is influenced when catch cropping with large-grain legumes (experimental factor A: without catch crop, with catch crop) under different ploughless tillage conditions during catch crop seeding (experimental factor B: deep tillage/25–30 cm, shallow tillage/8–10 cm). Five one-year trials were performed using standard machinery at various sites in Germany. Soil core samples extracted from the topsoil in the spring after catch crop cultivation served to identify air capacity, saturated hydraulic conductivity and precompression stress. The above-ground and below-ground biomass yields of the catch crops were also determined at most of the sites. In addition, the soil compaction risk for the working steps in the experiments was calculated using the REPRO model.The dry matter yield of the catch crops varied considerably between the individual trial sites and years. In particular, high levels of dry matter were able to form in the case of early seeding and a sufficient supply of precipitation. The soil structure was only rarely affected positively by catch crop cultivation, and catch crops did not contribute in the short term to loosening already compacted topsoils. In contrast, mechanical soil stresses caused by driving over the ground and additional working steps used in cultivating catch crops often led to lower air capacity in these treatments. This is consistent with the soil compaction risks calculated using the REPRO model, which were higher in the treatments with catch cropping. Catch crop cultivation also only resulted in improved mechanical stability at one location. The positive effect of deep ploughless tillage on air capacity and saturated hydraulic conductivity, however, became more clearly evident regardless of catch crop cultivation. In order for catch crop cultivation with large-grain legumes to be able to have a favourable impact on soil structure, it is therefore important that cultivating them does not result in any new soil compaction. In the conditions evaluated, deep tillage was more effective at loosening compacted topsoil than growing catch crops. 相似文献
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Ragweed (Ambrosia artemisiifolia L.) is a noxious plant that not only is a troublesome agronomic weed that causes economic damage to agricultural crops but also − and even more importantly − causes severe health problems due to its severe allergenicity. The pollen of invasive ragweed has become a major allergenic risk factor in urban areas in newly occupied regions. Many urban areas prohibit herbicide application; thus, mowing is the most widely used control measure. Counting pollen is labour intensive; therefore, pollen production data are mainly based on estimations. Field experiments were conducted to determine the effects of different mowing scenarios, plant density and cutting height on the biomass, pollen production and seed production of common ragweed plants. Ragweed plants were mown twice: just before the flowering of terminal racemes (BBCH 59) and when the flowers of the re-sprouting lateral shoots reached BBCH 59. A 1- to 3-cm cutting height produced the greatest pollen reduction compared to that of intact control plants (94%) based on a season-long pollen collection. The number of female flowers also significantly decreased (97%). Compared to the control, the onset of pollen discharge was delayed by 5 weeks and the length of the pollen discharge period decreased from 9 to 4 weeks. The season-long unique and reproducible pollen production data can be integrated with airborne pollen modelling and population management strategies. 相似文献
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马力 《湖南农业大学学报(自然科学版)》2011,37(5):479-483
采用三速和单速循环风机,研究密集烤房不同循环风机对烤烟色素及感官质量的影响.结果表明:采用三速循环风机烤后烟叶的叶绿素a、叶绿素b含量分别为5.10、167.74 μg/g,分别为单速循环风机的72.11%和93.30%;叶黄素、β-胡萝卜素、类胡萝卜素含量分别为0.84、155.56、156.40 μg/g,分别为单... 相似文献
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为提高天然气发动机的燃烧品质,基于6105型涡轮增压CNG发动机,通过建模分析法,对发动机不同燃烧室形状对缸内气流运动和燃烧特性的影响进行了三维数值模拟研究。研究结果表明,燃烧室形状对挤流的形成和燃烧过程有着重要影响。缩口型燃烧室具有较大的挤流强度和较长的涡流持续期,火焰传播速度快,燃烧性能好,但其火花塞附近的热负荷较大,NOx的含量高。敞口型燃烧室挤流强度较弱,火焰传播速度较慢,燃烧性能最差。直口型燃烧室则介于两者之间,既能保证较快的火焰传播速度和较好的燃烧性能,又降低了其火花塞附近的热负荷和NOx的排放量,是较适合天然气发动机采用的燃烧室。 相似文献
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基于冠层温度和土壤墒情的实时监测与灌溉决策系统 总被引:4,自引:0,他引:4
设计了一个可以在线连续监测田间作物冠层温度、环境信息和土壤墒情的实时灌溉决策系统,并将其安装于农田进行了1 a实际运行和观测。系统采用太阳能供电和微处理器进行数据采集和管理,为野外的实际应用提供了保障。系统配置了红外温度、空气温/湿度、土壤水分/水势等传感器,能够及时采集田间全面的同步数据,排除了异地观测所形成的数据误差。采用悬臂式多点采集下垫面红外温度检测方法,可以快速采集更多和更高精度的数据,避免单点测量的人为误差。系统配备的快速锁紧装置,能够根据下垫面作物的生长情况进行传感器位置高度调节,使检测数据更符合田间实际情况。通过运行管理和监测数据分析可见,所监测数据能够很精细的刻画田间作物实际生长状况,可以用于灌区综合灌溉决策,实现田间精量灌溉管理和控制,为灌溉管理的精量化和智能化提供数据支持。 相似文献
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静压式平面空气轴承压力场的有限元分析 总被引:1,自引:0,他引:1
采用有限元理论分析了静压式平面空气轴承的压力场,并讨论了空气轴承压力场边界条件的处理。分析结果表明,空气轴承的压力场呈现尖峰状分布。分析结果已应用于三坐标测量机的空气轴承设计中,取得了令人满意的效果。 相似文献
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选取2015—2019年青岛市崂山区10个气象自动站的日气温数据和EC细网格模式2 m气温预报产品,验证EC细网格模式2 m气温预报产品最低温度和最高温度在青岛崂山地区的准确率,同时分析崂山地区温度的时间、空间分布特征,对预报产品进行订正,在实际业务中进行推广,提高预报的准确率,做好公众气象服务。结果表明,气温存在年变化差异和季节内差异,同一种温度下,春季和夏季的区域分布比较类似,秋季和冬季的区域分布比较类似;崂山区内EC细网格24 h最低温度预报值偏高,最高温度预报值偏低,最低温度的预报总体准确率比最高温度的预报总体准确率要高,西部地区的预报准确率要高于东部地区的准确率;通过订正后,发现最低温度4个季节的预报准确率都在50%以上,最高温度订正后的准确率,除夏季59%以外,其他各季节均在75%以上。 相似文献