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41.
C. Kechavarzi Q. Dawson P. B. Leeds-Harrison J. Szatyowicz & T. Gnatowski 《Soil Use and Management》2007,23(4):359-367
The rate of oxidation of peat soils is highly seasonal and varies with temperature and soil moisture content. Large variations in soil moisture content result in wet–dry cycles that can enhance peat degradation. Water‐table management plays a crucial role in controlling and damping the effect of these environmental factors. However, maintaining high ditch water levels in fields bounded by ditches does not guarantee a high field groundwater level. The effect of installing subsurface irrigation at different spacings on water table elevation was studied in a low‐lying peat grassland. The water table elevation data were compared against values predicted with a water balance model. In addition, greenhouse experiments were carried out on undisturbed soil core samples collected from the peat grassland as well as a low‐lying peatland under intensive arable faming to measure CO2 evolution under different water regimes. The field data from the peat grassland suggest that sub‐irrigation spacing as low as 10 m is necessary during summer periods to maintain groundwater levels similar to those in the ditches. Over the same period of observation, the difference in water level between the ditches and the non‐irrigated fields is as high as 0.7 m. Modelled outputs are in good correlation with the field observations, and demonstrate that simple water balance models can provide an effective tool to study the effect of water management practices and potential changes in subsurface conditions, climate and land use on water‐table levels. The measurement of CO2 emission from undisturbed peat soil columns shows that the rate of oxidation of soil organic matter from peat soils is highly seasonal and that drainage exacerbates the rate of peat mineralization. 相似文献
42.
结合塑料排水管材的自身特点及目前这一管材在市政排水领域的应用现状,通过多年的工程实践,从国家相关的法律法规及经济技术比较等角度出发,笔者认为大口径埋地塑料排水管替代传统的钢筋混凝土排水管将成为市政工程管网建设中的新趋势。 相似文献
43.
本文结合河网平源地区的水文地理特点,提出了雨水管道设计中管径确定与管道埋设分别独立进行,水力计算采用统一的水力坡降,管道埋设采用统一的安装坡度,以及提倡管底平接等设计思想与计算方法。 相似文献
44.
45.
In this paper, the selection of type, function and technological requirements of EMCS for Shenzhen Underground has been introduced.Based on the investigation for EMCS's worldwide applications and the analysis of practice in Shenzhen Underground, the comparison and selection of PLC and DDC have been done completely.At the same time,the introduction of EMCS is organized by the center level, station level and the spot level. 相似文献
46.
《保鲜与加工》2002,(5):52-57
In this paper, a shaking table test for large-span underground structure is introduced. Based on the test, the frequency of inherent vibration, damping ratio and the dynamic response of the structure are studied. The response of the underground structure for vertical seismic excitation is studied as a key point. With the different imbedding depth, the influence of interaction of soil and structure on the earthquake-resistant capacity of the underground structure is discussed. 相似文献
48.
摘 要:为有效控制玉米地下害虫、蚜虫和茎基腐病的常年危害,筛选具有较好控制作用的种衣剂,笔者开展了14种悬浮种衣剂田间药效试验。试验表明:14种种衣剂对供试玉米品种出苗安全;氟虫腈?噻虫嗪(30%悬浮种衣剂)(1:1000)处理的出苗率96.7%为最高值。氟虫腈?噻虫嗪(30%悬浮种衣剂)(1:1000)对玉米地下害虫、玉米蚜虫的防治效果分别达84.8%、80.0%。精甲?咯?嘧菌(11%悬浮种衣剂)(1:2000)对玉米茎基腐病的防治效果达73.7%。说明以噻虫嗪、氟虫腈和甲霜灵为主的复配防治玉米地下害虫、蚜虫、茎基腐病,能够取得较好的防治效果。建议针对不同的生态类型区域,结合品种、施肥、管理等措施选用不同的配方,以取得最佳的防治效果。 相似文献
49.
晒田强度和穗肥运筹对三角形强化栽培水稻光合生产力和氮素利用的影响 总被引:2,自引:0,他引:2
以杂交中稻组合II优498为材料,在三角形强化栽培(TSRI)条件下,研究3种晒田强度(0~20 cm土壤相对含水量为80%±5%、60%±5%和40%±5%,分别记为W1、W2和W3)和3种穗肥运筹(晒田复水后第1、8和15天施用第1次氮素穗肥,分别记为S1、S2和S3)对灌浆结实期水稻光合生产和氮素利用的影响。结果表明,晒田程度和穗肥运筹对水稻光合生产、干物质积累、氮素积累、转运和利用和产量的影响存在显著互作效应,且晒田影响最为显著,氮素穗肥运筹次之。轻度晒田(W1)复水后第1天施用第1次氮素穗肥会降低抽穗后15 d和30 d的群体光合和有效穗数,推迟至复水后第8天或第15天施用第1次氮素穗肥可以提高抽穗后15 d和30 d的群体光合、收获指数和氮素稻谷生产效率;中度和重度晒田(W2和W3)复水后第1天和第8天施用第1次氮素穗肥可以提高孕穗期和齐穗期剑叶Pn和抽穗后15 d和30 d的群体光合、干物质积累、籽粒产量及构成指标、稻株氮素积累与利用。经过分析比较得出,TSRI模式下W2S1为晒田强度和穗肥运筹的最优组合,产量达到10.96 t ha-1。 相似文献
50.
In view of the different of the underground heat storage water tank of solar position arrangement, make use of the Fluent software program numerical simulation and calculation, it is concluded that under different conditions the heat storage water tank temperature field distribution of the soil around. At the same time, establishing physical model and mathematical model of underground heat storage water tank and combined with practical engineering, verify the underground storage tank for heat and energy storage, to obtain the relationship between the tank roof loss and total heat release. Calculation results show that under the same conditions, outdoor storage tank at the top of the heat dissipating capacity to reduce, so the method can be used to offset at the top of the energy required collector to reduce, so the method can be used to offset this part of the energy required collector area of the cut, improve thermal efficiency and reduce the user store hot water tank of the store. 相似文献