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韩会玲 《河北农业大学学报》1990,13(3):79-84
本文针对多泵多塔多节点的供水系统,给出用迭代计算确定水泵工况的计算方法,并给出在电子计算机上实现上述计算的程序的步骤。 相似文献
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In order to optimize design and operation, it is necessary to calculate accurately hydraulic characteristics large central air-conditioning systems. Simplified Model can not be applied to hydraulic calculation of large pipe network topological structure for its large calculation error. Taking into account the regulating characteristics of terminal branch temperature regulating valve, a direct-return chilled water system is studied, an accurate mathematical model of pipe network hydraulic characteristics has been established and a computer logic algorithm with virtual flow has been given. A direct-return pipe network with ten AHU branches is used as simulation calculation object, the pipe network supply-return water pressure difference is calculated, and also the temperature regulating valve opening and actual flow of each branch are calculated in the condition of different supply-return water pressure difference. The calculated results accord with the natural characteristics of high pressure difference unbalanced for direct-return pipe network. The calculation method can ensure calculation convergence. 相似文献
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梯级泵站供水系统水资源优化调度模型研究 总被引:3,自引:2,他引:3
采用系统分析理论 ,研究了梯级泵站供水系统的水资源优化调度问题 ,建立了具有提调水量和泄弃水量两个决策变量及多级泵站、多个水库、多个供水片的多目标水资源优化调度模型 ,给出了自优化模拟调度方法。经实例研究表明 ,模型是可行和实用的 相似文献
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研究分层供水施磷对冬小麦磷效率及产量的影响,为指导旱地施磷提供一定理论和实践依据。试验设整体湿润(W1)和上干下湿(W2) 2 种水分处理,不施磷(CK)、表施(SP)、深施(DP)3 种施磷处理,供试品种选用水分敏感型(‘小偃22’)和抗旱型(‘长旱58’)。研究结果表明:磷肥施用深度对冬小麦磷根效率比、磷肥利用效率、磷肥偏生产力(PFPP)及产量的影响随土壤水分和品种而异。2 种水分条件下,‘小偃22’DP较SP处理磷肥利用率、PFPp均显著降低(P<0.05),磷根效率比及产量则差异不显著;W1 处理下,‘长旱58’DP较SP处理除磷根效率比外其他指标均显著降低(P<0.05),W2 处理下则相反,上述指标均显著增加(P<0.05)。本试验结果表明,土壤水分供应不足时,磷肥深施有利于提高抗旱性较强冬小麦品种对磷素的吸收利用能力,从而提高磷肥利用率及产量。 相似文献
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The aim of the study was to investigate source‐sink relations of wheat under continuous heat stress and to identify bottle necks of yield formation. A pot experiment was conducted in two climatic chambers exposing wheat plants (Triticum aestivum L. cv. Thasos) either to day/night temperatures of 20/20°C (control conditions) or of 30/25°C (heat stress) during the whole vegetation period in the absence of plant water deficit. Plants were harvested at four phenological stages: three‐node stage (DC 33), start of flowering (DC 61), grain filling (DC 75) and maturity (DC 94). Heat stress shortened the development phases of the plants and caused a significant decrease in total above‐ground biomass between 19% and 41%. At grain filling and at maturity, the reductions in total shoot biomass mainly resulted from grain yield depressions by 77% and 58%, respectively. The ear number per plant was significantly higher under heat stress in comparison with the control, at maturity it was more than doubled. On the contrary, under heat stress, the kernel number per ear was strongly decreased by 83% and 75% during grain filling and at maturity, respectively. The decrease in individual kernel weight was 23% at maturity. Thus, the heat‐stressed plants were able to strongly increase the number of ear‐bearing tillers which were able to set only a small number of kernels, yet these kernels showed good grain filling. The harvest index (HI) of heat‐stressed plants was significantly reduced by 36% (control: HI = 50.1% ± 0.4, heat: HI = 32.2% ± 0.9***). The plants in the stress treatment adapted to the adverse conditions by less biomass production which presumably allowed a higher transpiration without an increase in total water consumption. Nevertheless, under heat stress, the water use efficiency (WUEgrain) was strongly decreased by 62% as a result of a small grain yield. In ears and grains, the sucrose, glucose and fructose concentrations were not significantly different between control and heat stress at start of flowering and during grain filling. Thus, the supply of assimilates was not restricted (no source limitation). Sink capacity was reduced by heat stress, as lesser and smaller kernels were produced than in the control. Concerning sink activity, the sink‐limiting step during kernel set is probably the active transport of hexoses across the plasma membrane into the developing kernels, which could also affect grain filling. This needs to be investigated in more detail in further studies. 相似文献
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辽宁营口沿海产业基地民兴河盐碱土对3种引进草种耐盐性的影响 总被引:2,自引:1,他引:2
为了确定辽宁省营口沿海产业基地民兴河盐碱地特性,筛选适宜草种,进行盐碱地综合开发和利用.分析测定该地区不同季节不同土层各离子含量,配制土壤盐溶液,测定3种引进草种(NHC牧草、RWW麦草、WAFG 硷草)在不同盐浓度处理下的生理指标.结果显示:该地区土壤含盐量随季节和土层变化而变化,0~60 cm土层,春季含盐量1.42%~1.11%,夏季含盐量1.32%~0.62%.土壤Na 、Cl-与盐度相关系数分别为0.984、0.950,该地区土壤为NaCl型盐土.不同盐处理下, NHC牧草发芽率、种子α-淀粉酶活性、可溶性糖含量、鲜重、成活率均显著高于其他2种试材.NHC牧草萌发的临介土壤盐浓度为200 mmol/L,发芽率为75%,30 d成活率为57%. 相似文献
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