在综合景观保护中应用景观生态原则:舒马瓦国家公园案例研究

Tomáš Janík, Dušan Romportl, Z. Křenová
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引用次数: 0

摘要

面对持续的人为压力和生物多样性的丧失,有必要更有效地保护自然。因此,我们提出了一种综合、连续的方法,利用景观生态学原理和方法进行有效的景观保护和空间自然保护。通过对捷克最大的国家公园--Šumava 国家公园的案例研究,展示了适用于各种条件的方法。利用一系列空间环境、景观生态和地理数据,我们可以从自然地理、社会经济和管理角度描述相关区域的特征,以创建概念框架并回顾分析该区域的重要背景信息。因此,确定了景观保护和生物多样性保护的关键因素。从土地覆盖、景观结构、栖息地破碎化和连通性等方面分析景观动态的趋势和过程,这有助于我们制定景观保护和自然保护的主要目标。利用有关环境条件、主要物种和栖息地出现情况的数据,建立栖息地适宜性模型,确定其适宜区域,从而加强保护。因此,高保护价值区域得以区分。综合上述步骤的结果,确定相关地区景观保护和生物多样性保护目标的优先次序。这将导致有效的分区,而有效的分区是采取适当管理措施的必要条件。
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Applying landscape ecological principles in comprehensive landscape protection: Šumava National Park as a case study
In the face of ongoing anthropogenic pressure and biodiversity loss, there is a need to protect nature more effectively. Therefore, we propose a comprehensive and consecutive approach utilising landscape ecological principles and methods for effective landscape protection and spatial nature conservation. Methods applicable in various conditions are exemplified through case studies from the Šumava National Park, the largest NP in Czechia. Using a set of spatial environmental, landscape ecological and geographical data we can: Characterise the area of interest from the physical-geographical, socioeconomic, and management point of view to create the concept´s framework and review important background information for analysis of the area. Therefore, the key factors for landscape protection and biodiversity conservation are defined. Analyse trends and processes of landscape dynamics in terms of land cover, landscape structure and habitat fragmentation and connectivity, which helps us to set main objectives of landscape protection and nature conservation. Use data about environment conditions and key species and habitat occurrence to model habitat suitability, identify their suitable areas, and thus improve their protection. As a result, areas of high conservation value are distinguished. Synthetize outputs of the above-mentioned steps and prioritise the target goals of landscape protection and biodiversity conservation in the area of interest. This leads to the effective zonation, which is a necessary condition for the application of appropriate management measures.
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