欢迎访问《生态学杂志》官方网站,今天是 分享到:

生态学杂志

• 综述与专论 • 上一篇    下一篇

巴厘岛梯田景观苏巴克灌溉系统及其生态水文效应研究进展

高璇,角媛梅*,刘澄静,查智琴,李绒   

  1. (云南师范大学旅游与地理科学学院, 昆明 650500)
  • 出版日期:2019-03-10 发布日期:2019-03-10

Traditional subak irrigation system and its eco-hydrological effects in Bali rice terraces, Indonesia.

GAO Xuan, JIAO Yuan-mei*, LIU Cheng-jing, ZHA Zhi-qin, LI Rong   

  1. (School of Tourism and Geography Sciences, Yunnan Normal University, Kunming 650500, China).
  • Online:2019-03-10 Published:2019-03-10

摘要: 灌溉系统通过调配水资源而改变农业景观中的生态-水文格局与过程,以便维持其稳定性。印尼巴厘岛苏巴克灌溉系统是当地人民有效调控梯田景观水生态格局与过程的智慧结晶,是巴厘岛梯田景观可持续发展的关键机制。本文以有关苏巴克灌溉系统的已发表文献为数据来源,阐述其在流域和灌区尺度提高农业水资源利用功能、保障梯田景观可持续发展的机制,并分析时空管理带来的生态水文效应。在流域尺度上,多层级水寺庙管理结构动态协调水资源的分配;而灌区尺度上,tek-tek分水制度和awigawig管理制度保障水资源高利用率,并缓解社区用水矛盾。苏巴克灌溉系统通过灌溉设施和水资源的时空管理活动使其具有增加水文连通性、控制虫害和提高生态系统服务功能等生态水文效应。已有苏巴克灌溉系统的研究以社会学、人类学、历史学等社会科学的定性和静态研究为主,而生态学、水文学等自然科学研究相对较少,未来应加强自然科学及多学科交叉的量化和动态研究,为世界上其他梯田系统保护和管理提供启示。

关键词: 生物多样性, 功能群, 土壤, 相悖度, 耦合度

Abstract: Irrigation system could regulate eco-hydrological pattern and process of agricultural landscape to maintain its sustainability through management of water resources. In Bali of Indonesia, a traditional Indonesian Subak Irrigation System (SIS) is the wisdom of local people to effectively regulate eco-hydrological pattern and process of terraced landscapes, which is the key mechanism underlying the sustainability of Rice Terraces Landscapes (RTL). We used the published literatures on SIS as a data source to review its mechanisms in ensuring the sustainable development of RTL and the reasonable exploitation of agricultural water resources at basin and irrigation-unit scales respectively, and further analyzed its eco-hydrological effects. At basin scale, the dynamic multi-level temple structure of management in SIS enhances stability and adaptability of RTL. At irrigation-unit scale, the rules of tek-tek water distribution and awig awig-management in each subak organization increase water use efficiency and alleviate community conflicts. Due to the irrigation facilities and spatio-temporal management activities, SIS has eco-hydrological effects, namely increasing hydrological connectivity, controlling pests and improving ecosystem services. The existing researches on SIS are mainly based on the qualitative and static research of social sciences such as sociology, anthropology, and history, with few on the natural sciences such as ecology and hydrology. In future, we should strengthen the quantitative and dynamic research of natural sciences and multi-discipline, which would provide inspiration for the protection and management of other terraces systems globally.

Key words: Biodiversity, Functional group, Soil, Intensity of discordance, Coupling intensity