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91.
利用ArcIMS提供的地图服务功能,实现切片式WebGIS,从而可以获得更稳定、更快速的系统应用,以及更友好的用户体验。文章提出了以ArcIMS为基础实现切片式WebGIS的基本原理与思路,实现了所涉及的关键技术,主要包括:地图切片与实际地理坐标间的转换、地图切片的生成、地图切片的存储管理策略及网络发布与应用等。文章就基于切片式WebGIS实现地震应急指挥系统进行了简单的讨论,并且利用本文讨论的原理和方法,实现了地震应急日常运维管理系统,在实际工作中得到成功应用。 相似文献
92.
α-淀粉酶通过降解淀粉产生发酵糖,并改变淀粉的物化特性,进而影响小麦制品的品质,其影响与α-淀粉酶来源、含量及小麦制品种类有关.成熟小麦籽粒中残留的α-淀粉酶活性存在极大差异,为了解迟熟α-淀粉酶对馒头品质的影响,以重组自交系群体中α-淀粉酶活性极端的小麦品系为材料,比较高低酶活材料制作的馒头品质之间的差异;并依据小麦材料α-淀粉酶活性的分布范围,设定不同的外源α-淀粉酶浓度,研究外源α-淀粉酶对小麦馒头质构、感官品质及微观结构的影响.结果显示,过高的内源α-淀粉酶含量(降落值小于300 s)会导致馒头的高径比及质构参数下降,这种变化趋势与添加过多外源α-淀粉酶的效果类似;α-淀粉酶含量过高,造成淀粉糊化过度,产气过多,馒头内部结构被破坏,持气能力降低,馒头塌陷;降落值不低于300 s的材料制作的馒头品质较好.本研究表明成熟种子中残留的α-淀粉酶对馒头品质有显著影响,优质馒头品种选育时应关注小麦α-淀粉酶活性的差异.(图4表11参35) 相似文献
93.
白洋淀由于长期受人类活动影响,部分区域内源污染严重.针对该类区域,"十三五"水专项开展了生态清淤试点工程以实现内源治理.在清淤过程中底栖生物容易遭到严重破坏,与之密切联系的食物网受到影响.在沉水植物补种成功后,如何科学地恢复底栖动物群落并维持长效稳定,急需寻求解决方案.本研究于2018年对白洋淀大型底栖动物群落进行调查,根据调研结果、习性特征和食物网模型,提出了受损后大型底栖动物群落恢复方案.研究发现,春季优势种为螺类软体动物和虾类甲壳类动物,夏季和秋季为螺类软体动物和昆虫类摇蚊幼虫.全年主要优势种为中华圆田螺、中国圆田螺、羽摇蚊和大红德永摇蚊.通过食物网模型计算,确定了软体动物是2010年和2018年的关键功能组.因此,综合优势种和关键种,底栖动物群落恢复物种主要选择虾类、螺类和摇蚊幼虫.根据底栖动物的习性,确定甲壳动物和摇蚊幼虫以自然恢复为主,螺类以人工恢复为主的恢复方式.针对螺类关键物种,根据2018年调研生物量、工程经验值和生态容量综合确定其恢复投加量合理范围.通过以上研究,建立了基于食物网成熟度和稳定性的底栖动物群落恢复优化调控方案,为受损底栖动物群落的恢复提供借鉴. 相似文献
94.
Junlian Qiao Yang Liu Hongyi Yang Xiaohong Guan Yuankui Sun 《Frontiers of Environmental Science & Engineering》2021,15(5):83
95.
Arthrobacter sp. strain CN2, capable of degrading 4-nitrophenol, was isolated from activated sludge. Degradation of 4-nitrophenol was optimized at pH 7.7, 30?°C, and 0.53% of glucose. Salt tolerance of 4-nitrophenol degradation was as high as 6% (w/v). Several biodegradation intermediates were identified and quantified by high-performance liquid chromatography and mass spectrometry. 4-Nitrocatechol is involved in the degradation of 4-nitrophenol by CN2. Scale-up of 4-nitrophenol degradation was conducted in a bioreactor with different salinity. When the salinity was below 7%, the degradation rate of 4-nitrophenol was above 90% (100 mg L?1, 3 L). 相似文献
96.
Mingliang?ZhangEmail author Huiting?Qiao Yuanyuan?Xu Yang?Qiao Kejun?Yang 《Environmental Fluid Mechanics》2016,16(5):965-981
Research on interactions among wave, current, and vegetation has received increasing attention. An explicit depth-averaged hydrodynamic model coupled with a wave spectral model (CMS-wave) was proposed in this study in order to simulate the wave and wave-induced current in coastal waters. The hydrodynamic model was based on the finite volume method while the intercell flux was computed by employing the Harten–Lax–van Leer approximate Riemann solver to investigate the dry-to-wet interface, and the drag force of vegetation was modeled as the sink terms in the momentum equations. The CMS-wave model was used to investigate the non-breaking and the breaking random waves propagation in vegetation fields. Afterwards, an empirical wave energy dissipation term with plant effect was derived to represent the resistance induced by aquatic vegetation in the wave-action balance equation. The established model was calibrated and validated with both the experimental and field data. The results showed that the wave height decreased significantly along the wave propagation direction in the presence of vegetations. The sensitivity analysis for the plant density, the wave height, and the water depth were performed by comparing the numerical results for the wave height attenuation. In addition, wave and wave-induced current through a finite patch of vegetation in the surf zone were investigated as well. The strong radiation stress gradient could be produced due to the variation of the energy dissipation by vegetation effect in the nearshore zone, which impacted the direction and amplitude of the longshore current. The calculated results showed that the coupling model had good performance in predicting wave propagation and the current over vegetated water regions. 相似文献
97.
J.?D.?Qiao S.?K.?DelavanEmail author R.?I.?Nokes D.?R.?Plew 《Environmental Fluid Mechanics》2016,16(5):1021-1041
Laboratory experiments are conducted to quantify the mean flow structure and turbulence properties downstream of a spanwise suspended linear array in a uniform ambient water flow using Particle Tracking Velocimetry. Eighteen experimental scenarios, with four depth ratios (array depth to water column depth) of 0.35, 0.52, 0.78, and 0.95 and bulk Reynolds number (length scale is the array depth) from 11,600 to 68,170, are investigated. Three sub-layers form downstream of the array: (1) an internal wake zone, where the time-averaged velocity decreases with increasing distance downstream, (2) a shear layer which increases in vertical extent with increasing distance downstream of the array, and the rate of the increase is independent of the bulk Reynolds number or the depth ratio, and (3) an external wake layer with enhanced velocity under the array. The location of the shear layer is dependent on the depth ratio. The spatially averaged and normalized TKE of the wake has a short production region, followed by a decay region which is comparable to grid turbulence decay and is dependent on the depth ratio. The results suggest that the shear layer increases the transfer of horizontal momentum into the internal wake zone from the fluid outside of the array and that the turbulence in the internal wake zone can be modeled similarly to that of grid turbulence. 相似文献
98.
This study compared the growth and lipid accumulation properties of two oleaginous microalgae, namely, Scenedesmus sp. LX1 and Chlorella sp. HQ, under different nutrient conditions. Both algal species obtained the highest biomass, lipid content and lipid yield under low-nutrient conditions (mBGll medium). The biomass, lipid content and lipid yield of Scenedesmus sp. LX1 were 0.42g·L^-1, 22.5% and 93.8mg·L^-1, respectively. These values were relatively higher than those of Chlorella sp. HQ (0.30g·L^-1, 17.1% and 51.3mg·L^-1, respectively). These algae were then cultivated in an SE medium that contained more nutrients; as a result, the biomass and lipid yield of Scenedesmus sp. LX1 reduced more significantly than those of Chlorella sp. HQ. Opposite results were observed in lipid and triacylglycerols (TAGs) contents. The cell sizes of both algal species under low-nutrient conditions were larger than those under high-nutrient conditions. Chlorella sp. HQ cells did not aggregate, but Scenedesmus sp. LX1 cells flocculated easily, particularly under low-nutrient conditions. In summary, low-nutrient conditions favour the growth and lipid production of both algae, but Scenedesmus sp. LX1 outperforms Chlorella sp. HQ. 相似文献
99.
100.