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Quantifying spatial scale of positive and negative terrains pattern at watershed-scale:Case in soil and water conservation region on Loess Plateau 被引量:7
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作者 YANG Feng ZHOU Yi 《Journal of Mountain Science》 SCIE CSCD 2017年第8期1642-1654,共13页
The positive and negative terrains(P-N terrains) widely distributed across China's Loess Plateau constitute the dual structure characteristic of loess landforms. Analysis of loess P-N terrains at the watershed sca... The positive and negative terrains(P-N terrains) widely distributed across China's Loess Plateau constitute the dual structure characteristic of loess landforms. Analysis of loess P-N terrains at the watershed scale can serve to elucidate the structural characteristics and spatial patterns of P-N terrains, which benefits a better understanding of watershed evolution and suitable scales for loess landform research. The Two-Term Local Quadrat Variance Analysis(TTLQV) is calculated as the average of the square of the difference between the block totals of all possible adjacent pairs of block size, which can be used to detect both the scale and the intensity of landscape patches(e.g., plant/animal communities and gully networks). In this study, we determined the latitudinal and longitudinal spatial scale of P-N terrain patterns within 104 uniformly distributed watersheds in our target soil and water conservation region. The results showed that TTLQV is very effective for examining the scale of P-N terrain patterns. There were apparently three types of P-N terrain pattern in latitudinal direction(i.e., Loess Tableland type, Loess Hill type, and Transitional Form between Sand and Loess type), whereas there were both lower and higher values for P-N terrain pattern scales in all loess landforms in the longitudinal direction. The P-N terrain pattern alsoclearly presented anisotropy, suggesting that gully networks in the main direction were well-developed while others were relatively undeveloped. In addition, the relationships between the first scales and controlling factors(i.e., gully density, nibble degree, watershed area, mean watershed slope, NDVI, precipitation, loess thickness, and loess landforms) revealed that the first scales are primarily controlled by watershed area and loess landforms. This may indicate that the current spatial pattern of P-N terrains is characterized by internal force. In selecting suitable study areas in China' Loess Plateau, it is crucial to understand four control variables: the spatial scale of the P-N terrain pattern, the watershed area, the main direction of the watershed, and the loess landforms. 展开更多
关键词 POSITIVE and NEGATIVE terrains ttlqv Spatial PATTERN SCALE LOESS LANDFORMS LOESS Plateau
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广东康禾自然保护区地面苔藓种群分布与格局分析 被引量:3
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作者 蒋甜甜 杨学成 +3 位作者 钟泳林 徐明锋 唐启明 苏志尧 《生态环境学报》 CSCD 北大核心 2018年第5期818-826,共9页
种群分布格局是植物群落的重要特征,研究种群分布格局是理解植物群落形成和构建的基础。采用Poisson数学模型和方差均值法检验广东康禾自然保护区地面苔藓种群分布格局的类型,利用双向轨迹方差法(TTLQV)分析其格局变化。结果显示,研究... 种群分布格局是植物群落的重要特征,研究种群分布格局是理解植物群落形成和构建的基础。采用Poisson数学模型和方差均值法检验广东康禾自然保护区地面苔藓种群分布格局的类型,利用双向轨迹方差法(TTLQV)分析其格局变化。结果显示,研究区苔藓植物整体呈集群分布,优势种东亚拟鳞叶藓(Pseudotaxiphyllum pohliaecarpum)平均拥挤指数最高(m*=13.04),聚块性指数最低(m*/m=1.15),细叶小羽藓(Haplocladium microphyllum)和细指苔(Kurzia gonyotricha)的平均拥挤指数次之,分别为11.85、10.00;而非优势物种树生扁萼苔(Radula obscura)和长叶羽苔(Plagiochila flexuosa)聚快性指数最高,分别为14.79、14.45;说明优势物种的种间竞争更强烈,非优势物种分布更聚集。种群格局变化表明,研究区苔藓植物的格局规模以小斑块聚集居多,如细指苔、神山细鳞苔(Lejeunea eifrigii)、东亚拟鳞叶藓及南方小锦藓(Brotherella henonii)等多个物种在区组4、5、15、22、24呈现斑块聚集,其格局规模的差异可能与苔藓植物的生存策略和生长环境密切相关。苔类植物与苔藓植物的整体格局变化更接近,在区组4都呈大斑块聚集,整体为镶嵌格局;而藓类植物在区组5、16、22均有较大的峰值波动,为大斑块聚集;说明苔类植物优势种群组在群落中占主导地位。不同苔藓物种呈现不同的格局变化,主要受其生物学特性与种间竞争的影响,生境异质性则是其集群分布的主要原因。 展开更多
关键词 种群分布格局 格局分析 苔藓植物 集群分布 ttlqv
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