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31.
李欣  张平宇  李静 《地理科学》2014,34(6):681-686
黑龙江省三江平原垦区是中国耕地规模最大的连片农垦区和第三大区际商品粮供应基地。近年来,随着这一地区工业化和城镇化进程的加快,如何科学的选择和建设区域的中心城市成为该区完善区域城镇体系和推进城镇化进程的紧迫任务和现实课题。基于此,应用改进的引力模型来计算县级单位与农场间的空间联系强度,界定出各县级单位的腹地范围,明确三江平原垦区的中心城市;以各农垦分局为研究单元,研究各农垦分局的碎化程度;通过明确县级单位拥有农场腹地数目,确定各农垦分局的中心城市;结果发现建三江、虎林、富锦、友谊和密山等宜作为三江平原垦区的中心城市;提出通过壮大中心城市的综合实力、推动场县共建和深化对外合作等措施来推动三江平原垦区城镇化进程。  相似文献   
32.
谭俊涛  张平宇  李静 《地理研究》2014,33(3):501-508
通过构建三江平原垦区基础设施和城镇化评价指标体系,运用主成分分析法,建立垦区基础设施评价函数和城镇化评价函数,分析了垦区的基础设施和城镇化发展现状。结果显示,垦区的基础设施水平和城镇化水平自2000年起呈现波动上升趋势,并且二者的协调性不断提高,最终围绕平衡状态上下波动。为检验垦区基础设施建设对城镇化的影响,将研究区域划分为基础设施建设超前型和滞后型,并对两组样本的基础设施水平和城镇化水平进行回归分析,发现垦区的基础设施对城镇化有较大的推动作用,并且基础设施超前型区域的推动效果更强。最后从基础设施建设的角度提出促进三江平原垦区城镇化发展的具体对策。  相似文献   
33.
In this study,the Surface Energy Balance Algorithms for Land(SEBAL) model and Moderate Resolution Imaging Spectroradiometer(MODIS) products from Terra satellite were combined with meteorological data to estimate evapotranspiration(ET) over the Sanjiang Plain,Northeast China.Land cover/land use was classified by using a recursive partitioning and regression tree with MODIS Normalized Difference Vegetation Index(NDVI) time series data,which were reconstructed based on the Savitzky-Golay filtering approach.The MODIS product Quality Assessment Science Data Sets(QA-SDS) was analyzed and all scenes with valid data covering more than 75% of the Sanjiang Plain were selected for the SEBAL modeling.This provided 12 overpasses during 184-day growing season from May 1st to October 31st,2006.Daily ET estimated by the SEBAL model was misestimaed at the range of-11.29% to 27.57% compared with that measured by Eddy Covariance system(10.52% on average).The validation results show that seasonal ET from the SEBAL model is comparable to that from ground observation within 8.86% of deviation.Our results reveal that the time series daily ET of different land cover/use increases from vegetation on-going until June or July and then decreases as vegetation senesced.Seasonal ET is lower in dry farmland(average(Ave):491 mm) and paddy field(Ave:522 mm) and increases in wetlands to more than 586 mm.As expected,higher seasonal ET values are observed for the Xingkai Lake in the southeastern part of the Sanjiang Plain(Ave:823 mm),broadleaf forest(Ave:666 mm) and mixed wood(Ave:622 mm) in the southern/western Sanjiang Plain.The ET estimation with SEBAL using MODIS products can provide decision support for operational water management issues.  相似文献   
34.
Total mercury in soil,water,plant,insects,fishes and bird feathers were determined to study mercury distribution and accumulation in typical wetland ecosystems in the Sanjiang Plain,Northeast China.Results show that total mercury concentrations in soils of Deyeuxia angustifolia wetland and Carex lascarpa wetland are 0.046 mg/kg and 0.063 mg/kg,respectively.Total mercury concentration in water bodies is 0.053 μg/L on average.Of four plants studied,total mercury in moss is the highest with the mean of 0.132 mg/kg.Of 10 terrestrial insect species studied,total mercury in centipede(Scolopendra spp.) is the highest with the mean of 0.515 mg/kg while total mercury in grasshopper(Oxya spp.) bodies is the lowest.Total mercury concentrations in the herbivorous,omnivorous and predatory insects are 10.18 ng/g,16.47 ng/g and 213.35 ng/g on average,respectively.Total mercury concentrations of the adult feather(549.88 ± 63.04 ng/g),nestling feather(55.15 ± 23.53 ng/g),and eggshell(22.05 ± 5.96 ng/g) of the Grey heron(Ardea cinerea) are higher than those of the Great egret(Egretta alba)(adult feather:446.57 ± 90.89 ng/g;nestling feather:32.99 ± 17.15 ng/g;eggshell:21.02 ± 3.17 ng/g) in the wetlands of the Sanjiang Plain.The bioconcentration factors decrease in the order of piscivorous fish muscle > omnivorous fish muscle > herbivorous fish > insect.  相似文献   
35.
三江平原沼泽湿地植被净初级生产力空间变化特征分析   总被引:2,自引:1,他引:1  
基于EOS/MODIS卫星2000~2005年的MOD17A3数据集,分析21世纪初三江平原沼泽湿地植被净初级生产力(NPP)时间变化和空间分异特征及其与气候因子(气温和降水)的关系,并采用空间分析方法,分析道路、河流、居民点等因子对沼泽湿地生产力的影响.结果表明,三江平原沼泽湿地生产力(C)的变化范围为92.2~675 g/(m2·a),平均值为374.2 g/(m2·a).沼泽湿地生产力主要受三江平原综合水热条件控制,其与气温和降水显著复相关,复相关系数为0.49(n=6,p<0.05).低生产力沼泽湿地主要分布在三江平原西、北部地区,高生产力沼泽湿地主要分布在东、南部地区.河流在0~8 km的范围内对三江平原沼泽湿地生产力有一定促进作用,但影响不显著.居民点扩建,道路修筑等人类活动影响沼泽湿地分布,并导致沼泽湿地生产力下降,其有效影响范围分别是0~6 km区域和0~8 km区域.  相似文献   
36.
三江平原中东部沼泽湿地形成及其演化趋势的探讨   总被引:1,自引:0,他引:1  
三江平原中东部是沼泽湿地集中连片分布地区。研究区有阶地沼泽和河漫滩沼泽两大类型沼泽分布,进一步可划分为4个沼泽体,即小叶章(Calamagrostis angustifolia)—毛苔草(Carex lasiocarpa)沼泽;毛苔草沼泽;睡菜(Menyanthes trifoliata)—水木贼(Equisetum limosum)沼泽;漂筏苔草(Carex pseudocuraica)—毛苔草沼泽。研究区沼泽湿地形成的主要自然因素为:①新构造运动的大面积沉降;②地势低平,坡降平缓、河道变迁,复杂的微地貌,易于积水,促使沼泽湿地的大面积形成;③厚3~17m的第四纪粘土层沉积地表,使地表渗透性差;④气候因素,研究区处于温带大陆性湿润季风气候区,雨量集中于夏季,且多秋雨,冬季积雪深度大,封冻期长,季节性冻土层厚;⑤水文因素,河流比降小,糙率大,流速缓,多为沼泽性河流,春汛与夏汛之间只出现平水不出现枯水,洪水期间,洼地和河流受松花江、黑龙江等大河、大江的洪水顶托,研究区的承泄条件差,内水不能外排,长期积蓄地表。目前研究区沼泽有变干的趋向。  相似文献   
37.
The Jinping terrane is situated in the southern segment of the Ailaoshan ore belt, Sanjiang Tethyan Orogen (SW China). The Paleogene intrusions in Jinping consist of syenite porphyry, fine-grained syenite and biotite granite stocks/dikes, and contain relatively low TiO2 (0.21–0.38 wt%), P2O5 (0.01–0.35 wt%), and high Na2O (2.00–4.62 wt%) and K2O (4.48–7.06 wt%), belonging to high-K alkaline series. Paleogene gold mineralization in Jinping comprises four genetic types, i.e., orogenic, alkali-rich intrusion-related, porphyry and supergene laterite. The NW–NNW-trending faults and their subsidiaries are the major ore-controlling structures. The orogenic Au mineralization, dominated by polymetallic sulfide-quartz veins, occurs in the diorite and minor in Silurian-Devonian sedimentary rocks. It contains a CO2-rich mesothermal fluid system generated from the mixing of mantle-derived fluids with crustal-derived metamorphic fluids, and the ore-forming materials were upper crustal- or orogenic-derived. The alkali-rich intrusion-related Au mineralization is hosted in the Ordovician-Silurian sedimentary rocks and minor in the Paleogene alkaline intrusions, and the Au orebodies occur predominantly in the alteration halos. It contains a CO2-bearing, largely metamorphic-sourced mesothermal fluid system, and the ore-forming materials were derived from the ore-hosting rocks and minor from the alkali-rich intrusions. The porphyry Cu-Mo-Au mineralization occurs in the granite/syenite porphyries and/or along their contact skarn, with the mineralizing fluids being magmatic-hydrothermal in origin. The former two hypogene Au mineralization types in Jinping were mainly formed in the late Eocene (ca. 34–33 Ma) and slightly after the porphyry Cu-Mo-Au mineralization (ca. 35–34 Ma), which is coeval with the regional Himalayan orogenic event. Subsequent weathering produced the laterite Au mineralization above or near the hypogene Au orebodies.  相似文献   
38.
为揭示湿地变化剧烈区湿地格局变化过程及规律,利用GIS和RS技术,结合地学信息图谱与空间自相关方法,对1954-2010年三江平原沼泽湿地格局变化及其影响因素进行研究。结果表明:1954-2010年三江平原沼泽湿地面积逐渐减少,88.7%的沼泽湿地丧失,湿地斑块数量呈先增加后减少的趋势;三江平原沼泽湿地的空间聚集性逐渐降低,且空间格局由集中连片分布转变为零星散布;降雨量减少、气温升高及径流量减少,是造成沼泽湿地减少的主要原因之一,地形地貌影响到沼泽湿地的丧失程度,以海拔20~80 m的沼泽湿地面积丧失最多。三江平原沼泽湿地的丧失同时受农业开发、居民点分布、湿地保护区建设影响,距居民点越近,沼泽湿地面积丧失呈指数增加,距保护区越近,沼泽湿地面积丧失越多。  相似文献   
39.
三江平原土地利用变化对水体中铁环境行为的影响   总被引:1,自引:0,他引:1  
三江平原湿地农田化对铁的赋存形态、迁移转化特征及输出量产生影响。以湿地沼泽水体和稻田水体为研究对象,利用切向超滤技术分离铁的形态,研究土地利用变化前后铁的形态、迁移转化特征的差异。结果表明:湿地农田化后水体中可溶态总铁质量浓度下降16.9%;由于水体pH值的升高,Fe2+质量浓度下降56.3%,非溶解态酸性不稳定铁含量显著升高。沼泽水和稻田水在迁移过程中,铁均以络合态铁和酸性不稳定态铁2种形态迁移。沼泽水在迁移过程中Fe2+和络合态铁含量下降,酸性不稳定态铁含量升高,胶体态铁含量变化不大;稻田水在迁移过程中,络合态铁和酸性不稳定态铁含量下降,Fe2+和胶体态铁含量较稳定。2种水体铁形态的转化有较大差异:日间沼泽水中非溶解态的酸性不稳定态铁向可溶态铁转化;稻田水体可溶态铁向酸性不稳定态铁转化。  相似文献   
40.
The species diversity at the regeneration stage, inflenced by different water levels, is important for community composition in the later growing season. Regeneration diversity of Carex lasiocarpa community under different water levels was studied at two stages, recruitment and adult, in the Sanjiang Plain, Heilongjiang Province, China. The results showed that, at the two growing stages, important value of C. lasiocarpa population and species richness of the community decreased with the increasing water level, while the Simpson and Shannon-Wiener diversity indexes and Pielou evenness index increased. Under different water levels, community diversities were higher at the recruitment stage, while population important values of C. lasiocarpa were higher at the adult stage. Indexes in vegetation evaluation must be chosen prudentially for successful restoration and effective management of wetlands, and especially for wetland restoration, the optimal time should be selected according to the restoration objectives and costs.  相似文献   
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