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101.
The method and principle of the parameter design for the power train of EV is explored and discussed,then the parametersof EV. based on SC7101 are reasonably selected.The method of calculating the SOC of Lead_acid battery is provided and the relation among the electromotive force,the interior resistance, the polarized resistance and the SOC are analyzed. The capacity is compensated according to the relation between the capacity and the temperature, which is the basis on which the energy management system is designed and improved. The dynamic model which reflects the dynamic characteristics of the power train is established,then the dynamic performance of the EV based on SC7101 is simulated, and the factors that affect the continuous mileage of EV are analyzed,the measures to increase the continuous mileage are provided.The result shows that the analysis of the electric characteristics of battery and the dynamic model are correct,and the dynamic performance perfectly meets the need of the design target.  相似文献   
102.
Breeding wheat and rye for resistance to Fusarium diseases   总被引:6,自引:1,他引:6  
T. Miedaner 《Plant Breeding》1997,116(3):201-220
Fusarium culmorum and F. graminearum Groups 1 and 2 cause seedling blight, crown rot, foot rot and head blight in wheat and rye that may affect grain yield and quality for baking and feeding. This review starts with an analysis of Fusarium populations with regard to their genetic variation for aggressiveness, mycotoxin production, and isolate-by-host genotype interaction. To assess resistance in the different host growth stages, quantitative inoculation and disease assessment techniques are necessary. Based on estimated population parameters, breeding strategies are reviewed to improve Fusarium resistance in wheat and rye. Epidemiological and toxicological aspects of Fusarium resistance that are important for resistance breeding are discussed. F. culmorum and F. graminearum display large genetic variation for aggressiveness in isolate collections and in naturally occurring populations. The production of mycotoxins, especially deoxynivalenol and its derivatives, is a common trait in these populations. Significant isolate-by-host genotype interactions were not found across environments in wheat and rye. Artificial infections in the field are indispensable for improving Fusarium crown rot, foot rot and head blight resistance in wheat and rye. For a reliable disease assessment of large populations, disease severity ratings were found to be the most convenient. The differentiation of host resistance is greatly influenced by an array of nongenetic factors (macro-environment, microclimate, host growth stage, host organ) that show significant interactions with host genotype. Selection for environmentally stable resistance has to be performed in several environments under a maximum array of different infection levels. Selection in early growth stages or on one plant organ does not in most cases allow prediction of resistance in adult-plant stages or another plant organ. Significant genetic variation for resistance exists for all Fusarium-incited diseases in breeding populations of wheat and rye. The patho-systems studied displayed a prevalence of additive gene action with no consistent specific combining ability effects and thus rapid progress can be expected from recurrent selection. In wheat, intensive testing of parental genotypes allows good prediction of the mean head blight resistance after crossing. Subsequent selection during selfing generations enables the use of transgression towards resistance. In hybrid breeding of winter rye, the close correlation between foot rot resistance of inbred lines and their GCA effects implies that selection based on the lines per se should be highly effective. This is not valid for F. culmorum head blight of winter rye caused by a greater susceptibility of the inbred lines compared to their crosses. For both foot rot and head blight resistance, a high correlation between the resistance to F. graminearum and F. culmorum was found in wheat and rye. Mycotoxin accumulation occurs to a great extent in naturally and artificially infected plant stands. The correlation between resistance traits and mycotoxin contents are medium and highly dependent on the environment. Further experiments are needed to clarify whether greater resistance will lead to a correlated reduction of the mycotoxin content of the grains under natural infection.  相似文献   
103.
In this paper according to the relationships between indoor-outdoor climate parameters, indoor thermal environment parameter and heat insulation parameters of enclosure, the control condition of indoor thermal environment and the control parameters of heat insulation-energy saving are advanced. Prescribing a quality limit for the parameters, the control indexes for the heat insulation energy saving of the enclosure are given.  相似文献   
104.
菠萝渣汁发酵果酒的研究   总被引:4,自引:0,他引:4  
采用单因素试验和正交试验方法对菠萝渣汁发酵果酒的工艺及有关工艺参数进行了初步探讨。结果表明:发酵温度、糖度、pH值、酵母接种量均为显著因素,最佳工艺条件为:主发酵温度28℃,糖度22%,pH值为4.0,酵母接种量为5%。  相似文献   
105.
为了提高全尾砂料浆的脱水浓缩效果,将磁化处理技术引入到全尾砂料浆脱水浓缩中,并建立GA-SVM模型优选全尾砂料浆的沉降参数。建立支持向量机(SVM)沉降参数优化模型,以磁感应强度、磁化处理时间、料浆流速、料浆浓度、絮凝剂单耗为输入因子,沉降速度为综合输出因子,通过正交试验建立样本数据对SVM模型进行训练与检验,采用遗传算法(GA)对SVM模型参数进行优化,进而得到磁化全尾砂料浆沉降参数的GA-SVM优化模型。将GA-SVM模型运用到某铁矿磁化全尾砂料浆沉降参数优化中,得到的最佳沉降参数为磁感应强度0.192 T、磁化处理时间1.85 min、料浆速度1.92 m/s、PAC单耗28 g/t,沉降速度可达约155 cm/h。研究表明:适宜的磁化处理条件可提高全尾砂料浆的脱水浓缩效果,节约30.0%~42.5% PAC用量,GA-SVM模型对全尾砂料浆沉降参数预测结果相对误差在5%以内、预测精度高,为全尾砂料浆脱水浓缩及其参数优选提供了一种新思路。  相似文献   
106.
由于橡胶材料具有非线性和大变形特性,使得描述橡胶力学特性的本构模型参数的确定比较烦琐和困难。为了提高橡胶本构模型参数识别的准确性,基于超静定方程求解原理推导出一种新的识别方法。以某橡胶衬套为例,识别的参数应用于有限元分析,对比试验数据,结果表明该识别方法可以准确识别橡胶材料参数,并且精度相对于最小二乘法有了明显改善,显示了超静定识别法的有效性和可靠性。  相似文献   
107.
分析挤压加工过程中,挤压工艺参数对食品营养品质的影响。论述螺杆转速、喂料湿度、机筒温度等工艺参数对挤压加工物料中的蛋白质、淀粉、脂肪、维生素、有效赖氨酸含量和脲酶活性的影响,从另一个角度揭示了产品营养品质在挤压过程中受到的影响。  相似文献   
108.
旨为分析不同西瓜品种在发芽期的耐冷特性、苗期的生长特性、光合作用及生理生化方面的差异,筛选出西瓜耐冷性的综合鉴定指标和鉴定方法,为实际生产上选育耐冷性的西瓜种质资源提供依据。通过对12份西瓜材料进行耐冷性比较,初步筛选出3个耐冷性不同的西瓜材料,对这3个材料进行低温处理。结果表明:不同处理时间下,各品种的冷害指数有差异。通过测定处理6d和8d时的冷害指数,得出各品种耐低温性强弱,从中选出耐低温性品种红野一号、中等耐低温性品种抗病苏蜜和冷敏感品种橙兰。15℃低温条件下,耐冷性品种红野一号的发芽率、相对发芽率、胚根长及相对胚根长最高。15℃可作为西瓜种子发芽期耐低温性鉴定的适宜温度;种子的始发芽日期、相对发芽率、相对胚根长可作为西瓜芽期耐低温鉴定指标。三叶一心的西瓜幼苗低温处理后,植株的生长量降低,光合速率下降,植株叶片的酶活性增加,MDA含量上升,各指标的变化幅度与低温处理强度及品种自身耐冷性相关。得出植株的株高、叶面积、株鲜质量、根干质量、净光合速率( Pn)、Chl a/b比值、MDA含量的变化幅度可作为西瓜耐低温品种筛选的鉴定指标。  相似文献   
109.
土壤入渗参数的估算方法及其变异性研究进展   总被引:1,自引:0,他引:1  
土壤入渗参数是地面灌溉中灌溉制度制定、灌水质量评价的重要依据。此文总结了目前地面灌溉中常用的土壤入渗模型,并对入渗参数的各种估算方法做了详述,探讨了各种方法的优缺点,综述了土壤入渗参数的变异性及其对灌水质量的影响,指出了土壤入渗参数估算及其变异性分析中存在的问题,为今后揭示土壤入渗参数的反演及其变异规律提供参考。  相似文献   
110.
早熟柑橘黄龙病空间格局参数特征及其应用   总被引:1,自引:0,他引:1  
为了揭示柑橘早熟宫川黄龙病的空间分布信息和病株行为特征,2004-2009年采取多级抽样法于每年11月上旬在果实成熟期对2块定点样地逐株进行病级调查,取得了12组样本资料,应用聚集度指标法、Iwao 法和Taylor法等对其空间分布型进行测定检验,结果表明柑橘黄龙病在早熟宫川果园呈聚集分布,其聚集强度是随着病级升高而增加。其聚集原因经Blackith种群聚集均数测定,当m<2.1184时,其聚集是由于某些环境如气候、栽培条件、植株生育状况等所引起的;当m≥2.1184时,其聚集是由病株本身的聚集行为与环境条件综合影响所致。在此基础上提出了理论抽样数和序贯抽样模型:n=(1/D)2?[1/m+0.6761] 和Tn=1.831 /[D02-0.1581 /n]。  相似文献   
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