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81.
渐变体作为衔接不同断面形式的过渡段,被广泛地用于输水建筑物工程中,但其土方计算目前没有统一科学的计算方法.为此,本文列出了工程中常见的几种渐变段形式,并通过对断面函数数学特性进行分析,得妹到了常见渐变体任一断面面积函教为二次抛物线.因此,可通过起始断面面积,终止断面面积和中断面面积唯一确定任一断面面积函数,并将该函数沿渐变体长度方向积分,推导出渐变段土方计算的精确、通用计算公式.计算实例表明计算过程简单、误差小,概念清晰,可供设计人员参考.  相似文献   
82.
为提高诱虫板图像蔬菜害虫检测精度,针对背景区域容易导致误检的问题基于显著图分析技术构建了一种注意力深度网络害虫智能视觉检测方法。首先通过显著图筛选出粗候选区域;然后在粗候选区域内用全卷积神经网络精选出细候选区域;接着用神经网络分类器识别细候选区域害虫种类,得到含有冗余的若干检测框;最后用改进的非极大值抑制消除冗余检测框,实现诱虫板图像中目标害虫的检测。针对小菜蛾和瓜实蝇展开试验,获得86.4%的平均精度均值和0.111只的平均绝对计数误差均值,所提方法平均精度均值比Faster R-CNN和YOLOv4分别高2.74和1.56个百分点,平均绝对计数误差均值比Faster R-CNN和YOLOv4分别低0.006和0.003只;同时,消融试验中移除显著图注意力模块后平均精度均值下降了4个百分点、平均绝对计数误差均值增加了0.207只。试验结果表明,所提方法有效提高了诱虫板图像蔬菜害虫检测精度,其中,引入显著图注意力模块对提升检测精度有重要作用。  相似文献   
83.
为了提高谷物收获作业过程中谷物产量在线监测的精度,研制了基于谷物流压力原理的车载谷物产量在线监测系统,该系统包括谷物流量监测装置、定位装置、割台高度控制开关、核心处理器以及人机交互装置。以谷物产量与谷物流压力间的谷物产量监测数学模型为指导,搭建了谷物产量监测试验台,采用Box-Behnken试验设计方法优化谷物流量监测装置结构参数,研究了传感器数量、传感器安装位置和监测装置水平倾角对谷物产量监测系统测产误差的影响,确定了最优参数组合为传感器数量5、传感器安装位置0.24 cm、监测装置水平倾角5°,并对最优参数组合进行了验证试验,结果表明,谷物产量监测系统测产误差为3.27%,满足谷物产量监测的精度要求。对谷物产量监测系统田间实际效果进行了试验验证,试验结果表明,田间测产误差为5.28%,生成的产量分布图为后续田间作业管理提供了决策依据。  相似文献   
84.
范文雯 《林业科技情报》2021,53(1):29-30,32
森林资源作为国家的重要自然资源,不仅能够创造经济效益,还可以调节整个生态系统.伴随公众环保意识的日益增强,森林资源保护工作受到了社会的广泛关注,国家也采取了一系列措施加强森林资源的保护管理.然而从现实来看森林资源保护工作仍面临着不少问题需要解决.为此,就当前森林资源保护管理存在的主要问题进行了分析,探讨了有效的应对策略...  相似文献   
85.
赵甜甜  田康  胡文友  黄标  赵永存 《土壤学报》2022,59(5):1204-1214
磷是土壤生态系统中的重要组成元素,开展土壤磷循环研究对提高磷肥利用效率和降低磷的生态环境风险具有重要意义。磷酸盐氧同位素技术已经被证明是一种示踪环境中磷生物地球化学行为的有效方法。本文系统综述了磷酸盐氧同位素技术的研究进展和未来发展方向。详细介绍了磷酸盐氧同位素的技术原理、样品处理和测定方法;阐述了无机磷和有机磷的氧同位素特征及时空分布特征;从评估土壤磷微生物利用状况和示踪土壤磷循环两个方面探讨了磷酸盐氧同位素技术在土壤磷循环研究中的应用前景,分析了磷来源、环境条件、生物活动和样品前处理过程对土壤磷酸盐氧同位素特征的影响,最后展望了该技术未来的研究方向。以期为磷酸盐氧同位素技术在土壤学和环境科学领域的发展和应用提供新的视角和科学指导。  相似文献   
86.
郑翔  刘琦  曹敏敏  纪小芳  方万力  姜姜 《土壤学报》2022,59(5):1190-1203
大气中氧化亚氮(N2O)浓度的上升加剧了全球变暖。森林土壤在调节大气N2O浓度中发挥着至关重要的作用。近年来,氮(N)输入对森林土壤N2O通量的影响备受关注。然而,森林土壤N2O排放对N输入响应的机制,尤其是植物和微生物对N2O通量的调控作用尚缺乏系统研究。因此,本文综述了N输入如何通过森林植被(根系N吸收、凋落物分解和形成丛枝菌根)和土壤微生物(微生物量和群落组成)调控N2O产生途径从而影响森林土壤N2O排放。结果表明,植物的竞争性氮吸收能降低氮输入对N2O排放的促进作用,其作用大小可能主要取决于土壤“氮饱和”状态。植物凋落物主要通过分解过程中的养分归还和次生代谢产物释放来影响氮输入背景下的森林土壤N2O排放,前者具有促进作用,而后者具有抑制作用。丛枝菌根主要通过吸收有效氮和水分、促进团聚体形成以及改变N2O相关功能基因群落调控森林土壤N2O通量。N输入导致的土壤酸化或养分限制,通常会降低微生物量和/或改变微生物群落组成,从而控制N2O排放。N输入对N2O不同产生途径也会造成影响,受土壤湿度、N2O底物浓度以及N2O相关功能基因丰度(AOB、 AOA、nirK、 nirS和nosZ)的调控。未来在模型预测中,需要将植物氮吸收、凋落物分解、菌根以及N2O产生途径充分纳入模型,以提高模型预测准确性,为全球变化背景下制订森林管理政策和温室气体减排措施提供支持。  相似文献   
87.
The composition of arbuscular mycorrhizal fungi (AMF) communities found in agricultural systems has been found to be very different to that of forest. The implications of this, if any, for the restoration of indigenous forest on ex-agricultural land is poorly understood. This study investigated the effect that AMF communities isolated from ex-agricultural and forest soils have on the growth of an indigenous New Zealand tree species (Podocarpus cunninghamii). The forest AMF community was isolated from a remnant stand of P. cunninghamii forest and the ex-agricultural AMF from a retired grazing grassland. In addition, the study examined how the two AMF communities affected the competitiveness of P. cunninghamii when grown in competition with an invasive grass species (Agrostis capillaris), which is frequently dominant on ex-agricultural land in New Zealand. P. cunninghamii growth was significantly decreased by inoculation with ex-agricultural AMF compared to forest AMF. Furthermore, the forest AMF community was able to significantly increase P. cunninghamii root production when in competition with A. capillaris. The findings suggest that when attempting to restore indigenous forest on ex-agricultural land, inoculation of tree seedlings with appropriate forest AMF may improve their growth and survival.  相似文献   
88.
The response of soil microbial communities following changes in land-use is governed by multiple factors. The objectives of this study were to investigate (i) whether soil microbial communities track the changes in aboveground vegetation during succession; and (ii) whether microbial communities return to their native state over time. Two successional gradients with different vegetation were studied at the W. K. Kellogg Biological Station, Michigan. The first gradient comprised a conventionally tilled cropland (CT), mid-succession forest (SF) abandoned from cultivation prior to 1951, and native deciduous forest (DF). The second gradient comprised the CT cropland, early-succession grassland (ES) restored in 1989, and long-term mowed grassland (MG). With succession, the total microbial PLFAs and soil microbial biomass C consistently increased in both gradients. While bacterial rRNA gene diversity remained unchanged, the abundance and composition of many bacterial phyla changed significantly. Moreover, microbial communities in the relatively pristine DF and MG soils were very similar despite major differences in soil properties and vegetation. After >50 years of succession, and despite different vegetation, microbial communities in SF were more similar to those in mature DF than in CT. In contrast, even after 17 years of succession, microbial communities in ES were more similar to CT than endpoint MG despite very different vegetation between CT and ES. This result suggested a lasting impact of cultivation history on the soil microbial community. With conversion of deciduous to conifer forest (CF), there was a significant change in multiple soil properties that correlated with changes in microbial biomass, rRNA gene diversity and community composition. In conclusion, history of land-use was a stronger determinant of the composition of microbial communities than vegetation and soil properties. Further, microbial communities in disturbed soils apparently return to their native state with time.  相似文献   
89.
为揭示土壤种子库在植被恢复中的作用,以太行山低山丘陵区的刺槐和栓皮栎2种乔木群落为研究对象,研究不同林龄刺槐、栓皮栎群落土壤种子库的组成、多样性特征以及种子库物种与地上植被的关系。结果表明:1)各群落草本层的共有科为菊科和禾本科,且所占比例较大;刺槐(30 a)群落地上物种的科数和种数最多,栓皮栎(20 a)最少,物种科数和种数随生长年限的增加而提高;多年生草本是刺槐(10、20、30 a)和栓皮栎(20、30、40 a)6个群落的主要生活型,群落间相似性系数为0~1.0。2)芸香科和禾本科在各群落土壤种子库中占有较大比例;种子库密度随林龄的增加而提高。刺槐群落土壤种子库的多样性随林龄增加而升高,而栓皮栎则呈现降低的趋势。3)土壤种子库中植物的科数和物种数都低于地上,且与地上物种类型不尽相同;土壤种子库对地上植被更新和演替贡献不大。  相似文献   
90.
Large areas of remaining tropical forests are affected by anthropogenic disturbances of various intensities. These disturbances alter the structure of the forest ecosystem and consequently its carbon budget. We analysed the role of fine root dynamics in the soil carbon budget of tropical moist forests in South-east Asia along a gradient of increasing disturbance intensity. Fine root production, fine root turnover, and the associated carbon fluxes from the fine root system to the soil were estimated with three different approaches in five stands ranging from an old growth forest with negligible anthropogenic disturbance to a cacao agroforestry system with planted shade trees. Annual fine root production and mortality in three natural forest sites with increasing canopy openness decreased continuously with increasing forest disturbance, with a reduction of more than 45% between the undisturbed forest and the forest with large timber extraction. Cacao agroforestry stands had higher fine root production and mortality rates than forest with large timber extraction but less than undisturbed forest. The amount of carbon annually transferred to the soil carbon pool through fine root mortality was highest in the undisturbed forest and generally decreased with increasing forest use intensity. However, root-related C flux was also relatively high in the plantation with planted shading trees. In contrast, the relative importance of C transfer from root death in the total above- and below-ground C input to the soil increased with increasing forest use intensity and was even similar to the C input via leaf litter fall in the more intensively managed agroforest. We conclude that moderate to heavy disturbance in South-east Asian tropical moist forests has a profound impact on fine root turnover and the related carbon transfer to the soil.  相似文献   
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