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落实科学发展观 全力加快河源发展 被引量:1
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作者 吴锐成 《南方经济》 北大核心 2005年第12期8-10,共3页
近年来河源的经济社会取得了快速健康发展,其根本原因在于坚持以科学发展观统揽全局,指导全市经济社会发展,本文介绍了河源取得快速发展的一些建议。
关键词 河源发展 科学发展 协调发展 可持续发展
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“互联网 ”背景下湾区帮扶河源旅游人才发展策略
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作者 邱志才 刘燕婷 《当代旅游(下旬刊)》 2019年第11期00018-00018,共1页
以“互联网+旅游”为背景,针对河源当前旅游人才的缺失的问题,借助粤港澳大湾区的人才优势,探讨了河源旅游人才的发展策略,包括高标准培养河源本地旅游人才、高目标实现湾区帮扶河源旅游项目人才、高要求搭建旅游政、校、企联盟和高效... 以“互联网+旅游”为背景,针对河源当前旅游人才的缺失的问题,借助粤港澳大湾区的人才优势,探讨了河源旅游人才的发展策略,包括高标准培养河源本地旅游人才、高目标实现湾区帮扶河源旅游项目人才、高要求搭建旅游政、校、企联盟和高效率组建旅游人才专家库。 展开更多
关键词 “互联网” 湾区帮扶 河源旅游人才发展
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STATUS AND DYNAMIC CHANGE OF REGIONAL MAN- LAND SYSTEM IN VIEW OF MICRO-LEVEL QUANTITATIVE ASPECT -Case Study of Gongyi City of Henan Province 被引量:5
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作者 QIAO Jia-jun LI Xiao-jian KONG Yun-feng 《Chinese Geographical Science》 SCIE CSCD 2006年第1期9-17,共9页
A micro-level analysis on man-land system is important in understanding the content of human geography in rural areas, particularly in the different regions. This paper is based on a survey undertaken in the three vil... A micro-level analysis on man-land system is important in understanding the content of human geography in rural areas, particularly in the different regions. This paper is based on a survey undertaken in the three villages of Wugou Village, Hutuo Village, and Xiaonan Village of Gongyi City, ltenan Province in April 2003. The survey covers three types of economic and social activities from 214 households. Data collected include 120 attributes for each household. By using theories from the relevant disciplines such as geography, mathcmatics, physics, ecology, and system sciences, this paper develops a framework employing the concept of system entropy in the status function of the man-land system. In this framework, the entropy change is used to show the evolution of the system, and the entropy flow to express the flow among the spatial parts of the system. Following the framework, and using a large set of household data from surveys, the paper makes a quantitative analysis of the village-level man-land system from a micro-perspective. After a theoretical investigation, the corresponding strategies in the paper are then put forward in order to adjust the unbalanced trend of the village man-land system from both perspectives of small-area and individual actors. 展开更多
关键词 man-land system village-level region system entropy
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Adaptation Management of Mountain Tourism Service: The Case of the Source Regions of the Yangtze and Yellow River 被引量:7
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作者 FANG Yiping QIN Dahe +1 位作者 DING Yongjian YANG Jianping 《Journal of Mountain Science》 SCIE CSCD 2009年第3期299-310,共12页
Mountain areas are often rich in ecological diversity and recreational opportunities. Mountain tourism is thought to be an effective and important means for maintaining and expanding rural economies and, thus, improvi... Mountain areas are often rich in ecological diversity and recreational opportunities. Mountain tourism is thought to be an effective and important means for maintaining and expanding rural economies and, thus, improving the living conditions of rural societies. As mountain tourism service research is a professional field with several disciplines involved, a multi-disciplinary management pIatform is needed and it facilitates participation in sustainable mountain development by diverse stakeholders. With the source regions of the Yangtze and the Yellow River as a case study, this paper presents a conceptual framework for an adaptation management of mountain tourism services according to technical, policy, social and economic dimensions. The framework is based on a vulnerability assessment of mountain ecosystems, and can serve as a reference for the development of tourism service in other mountain areas. 展开更多
关键词 adaptation management mountain tourism service (MTS) source regions of Yangtze and Yellow Rivers China
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A New Method of Assessing Environmental Flows in Channelized Urban Rivers 被引量:2
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作者 Xin-An Yin Zhifeng Yang +3 位作者 Enze Zhang Zhihao Xu Yanpeng Cai Wei Yang 《Engineering》 2018年第5期590-596,共7页
Assessing environmental flows (e-flows) for urban rivers is important for water resources planning and river protection, Many e-flow assessment methods have been established based on species' habitat pro- vision re... Assessing environmental flows (e-flows) for urban rivers is important for water resources planning and river protection, Many e-flow assessment methods have been established based on species' habitat pro- vision requirements and pollutant dilution requirements, To avoid flood risk, however, many urban rivers have been transformed into straight, trapezoidal-profiled concrete channels, leading to the disappearance of valuable species, With the construction of water pollution-control projects, pollutant inputs into rivers have been effectively controlled in some urban rivers, For these rivers, the e-flows determined by tradi- tional methods will be very small, and will consequently lead to a low priority being given to river pro- tection in future water resources allocation and management, To more effectively assess the e-flows of channelized urban rivers, we propose three e-flow degrees, according to longitudinal hydrological con- nectivity (high, medium, and low), in addition to the pollutant dilution water requirement determined by the mass-balance equation, In the high connectivity scenario, the intent is for the e-flows to maintain flow velocity, which can ensure the self-purification of rivers and reduce algal blooms; in the medium connectivity scenario, the intent is for the e-flows to permanently maintain the longitudinal hydrological connectivity of rivers that are isolated into several ponds by means of weirs, in order to ensure the exchange of material, energy, and information in rivers; and in the low connectivity scenario, the intent is for the e-flows to intermittently connect isolated ponds every few days (which is designed to further reduce e-flows), The proposed methods have been used in Shiwuli River, China, to demonstrate their effectiveness, The new methods can offer more precise and realistic e-flow results and can effectively direct the construction and management of e-flow supply projects, 展开更多
关键词 Environmental flow Urban river Channelized rivers River restoration
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