Landscape Ecological Structures and Patterns for Green Space Conservation in Forest Monasteries in Northeast Thailand

Q3 Environmental Science Environment and Natural Resources Journal Pub Date : 2024-07-01 DOI:10.32526/ennrj/22/20240016
Prat Kongsombut, Sura Pattanakiat, W. Rawang, Pattranit Srijuntrapun, Uthaiwan Phewphan, T. Phutthai, Sirasit Vongvassana, Jirapatch Jumpasingha
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Abstract

The green spaces in Wat Pah play an important role in forest conservation in Thailand. This study identified and analyzed the structures and patterns of landscape ecology in Wat Pah Nanachart, Ubon Ratchathani Province, to guide a conceptual framework for green space conservation in forest monasteries. Spatial analysis and modeling using geoinformatics technology were employed to recognize and characterize these landscapes. Information on the green space conservation and management of Wat Pah was also obtained using an in-depth interview and site observation. The results revealed that most of the green space in Wat Pah is forest, characterized by an ecological matrix and a dry evergreen forest. The forest structure can be divided into three canopies, dominated by the Dipterocarpaceae family, which has regenerated into upper and lower canopies. It is an edge matrix and ecological corridor connected to the internal and external green spaces of Wat Pah. It plays an important role in supporting cultural, religious, and aesthetic activities for ordained monks and Buddhists. The spatial landscape model can be divided into three main zones: Thoranisangha, Buddhawas, Sanghawas. Thoranisangha is an open space covered with traditional and artificially planted tree species. It is located in front of the temple and designed for public utilities in the context of managing and conserving the remaining trees. Buddhawas is a semi-open space mostly covered with traditional tree species. It represents Buddhism’s identity and uniqueness and is used for religious ceremonies and dissemination—listening to sermons, meditating, and praying. Meanwhile, Sanghawas is covered with natural forest and contains residences for monks that are designed to be in harmony with the forest ecosystem.
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泰国东北部森林寺院的景观生态结构和绿地保护模式
Wat Pah 的绿地在泰国的森林保护中发挥着重要作用。本研究确定并分析了乌汶叻差他尼府 Wat Pah Nanachart 的景观生态结构和模式,以指导森林寺院绿地保护的概念框架。采用地理信息技术进行空间分析和建模,以识别和描述这些景观。此外,还通过深入访谈和现场观察获得了有关 Wat Pah 绿地保护和管理的信息。结果显示,瓦帕的大部分绿地都是森林,其特点是生态基质和干燥常绿林。森林结构可分为三个树冠,以双子叶科植物为主,树冠分为上树冠和下树冠。它是连接 Wat Pah 内部和外部绿地的边缘基质和生态走廊。它在支持受戒僧侣和佛教徒的文化、宗教和审美活动方面发挥着重要作用。空间景观模型可分为三个主要区域:Thoranisangha、Buddhawas 和 Sanghawas。Thoranisangha 是一个开放空间,覆盖着传统和人工种植的树种。它位于寺庙前方,在管理和保护剩余树木的前提下为公共设施而设计。佛塔是一个半开放式空间,主要种植传统树种。它代表了佛教的特性和独特性,用于宗教仪式和传播--听道、冥想和祈祷。同时,Sanghawas 被天然森林覆盖,内有僧侣住所,其设计与森林生态系统相和谐。
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来源期刊
Environment and Natural Resources Journal
Environment and Natural Resources Journal Environmental Science-Environmental Science (all)
CiteScore
1.90
自引率
0.00%
发文量
49
审稿时长
8 weeks
期刊介绍: The Environment and Natural Resources Journal is a peer-reviewed journal, which provides insight scientific knowledge into the diverse dimensions of integrated environmental and natural resource management. The journal aims to provide a platform for exchange and distribution of the knowledge and cutting-edge research in the fields of environmental science and natural resource management to academicians, scientists and researchers. The journal accepts a varied array of manuscripts on all aspects of environmental science and natural resource management. The journal scope covers the integration of multidisciplinary sciences for prevention, control, treatment, environmental clean-up and restoration. The study of the existing or emerging problems of environment and natural resources in the region of Southeast Asia and the creation of novel knowledge and/or recommendations of mitigation measures for sustainable development policies are emphasized. The subject areas are diverse, but specific topics of interest include: -Biodiversity -Climate change -Detection and monitoring of polluted sources e.g., industry, mining -Disaster e.g., forest fire, flooding, earthquake, tsunami, or tidal wave -Ecological/Environmental modelling -Emerging contaminants/hazardous wastes investigation and remediation -Environmental dynamics e.g., coastal erosion, sea level rise -Environmental assessment tools, policy and management e.g., GIS, remote sensing, Environmental -Management System (EMS) -Environmental pollution and other novel solutions to pollution -Remediation technology of contaminated environments -Transboundary pollution -Waste and wastewater treatments and disposal technology
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