[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2431":3},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":6,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":18,"tags":20,"view_count":15,"doi":25,"paper":26,"created_at":45},2431,"Integrating Local Knowledge And Decentralized Land Management For Climate-Resilient Built Environment Planning In Northern Jigawa State, Nigeria","https:\u002F\u002Fdoi.org\u002F10.67693\u002Fbjcr-4x243sna","Climate vulnerability in semi-arid regions is increasingly shaped by the interaction of land-use change, vegetation stress, climate variability, settlement expansion and weak land-management systems.This study examines how local knowledge and decentralized land management can support climate-resilient built environment planning in Northern Jigawa State, Nigeria.The article links land-use pressure, vegetation change and climate variability with built-up expansion, permeable surface availability, settlement resilience and community knowledge in order to propose a co-created planning approach for sustainable built environment outcomes.The study adopted an integrated mixed-methods socio-spatial design using thesis-derived evidence from multitemporal Landsat imagery, NDVI analysis, land-use\u002Fland-cover classification, rainfall and temperature assessment, socioeconomic indicators, built-environment sustainability variables, interviews, focus group discussions and stakeholder observations.Findings indicate that population growth, agricultural expansion and infrastructure development have intensified pressure on land resources, contributing to vegetation decline, reduced surface permeability and increased exposure to heat stress, runoff and localized flooding risks.The results also show that rainfall variability and rising temperature interact with human land-use decisions to shape climate vulnerability.The study concludes that resilient built environment planning in semi-arid areas requires more than technical spatial planning; it demands the integration of geospatial evidence, local knowledge, decentralized land-use control, vegetation restoration and participatory environmental governance.","半干旱地区的气候脆弱性日益受到土地利用变化、植被胁迫、气候变率、聚落扩张和土地管理系统薄弱等因素交互作用的影响。本研究探讨了地方知识与分散化土地管理如何支持尼日利亚吉加瓦州北部气候韧性建成环境规划。文章将土地利用压力、植被变化和气候变率与建成区扩张、透水地表可用性、聚落韧性和社区知识相联系，以提出一种共同创造的规划方法，促进可持续的建成环境成果。研究采用综合混合方法的社会-空间设计，运用多时相Landsat影像、NDVI（归一化植被指数）分析、土地利用\u002F土地覆盖分类、降雨与温度评估、社会经济指标、建成环境可持续性变量、访谈、焦点小组讨论和利益相关者观察等论文衍生证据。研究发现表明，人口增长、农业扩张和基础设施建设加剧了土地资源压力，导致植被退化、地表透水性降低以及热胁迫、径流和局部洪水风险暴露增加。结果还显示，降雨变率和气温上升与人类土地利用决策相互作用，共同塑造气候脆弱性。研究结论认为，半干旱地区的韧性建成环境规划不仅需要技术性空间规划，还需要整合地理空间证据、地方知识、分散化土地利用管控、植被恢复和参与式环境治理。",null,"British Journal of Contemporary Research","2026-09-11T00:00:00Z","论文",10,false,0,{"impact":15,"substance":15,"depth":15,"authority":15,"freshness":15,"relevant":15,"comment":17},"研究聚焦尼日利亚半干旱区建成环境规划与地方知识治理，属城市与土地管理议题，与三农、农业信息化、数字乡村等平台主题无直接关联，不建议进入每日精选。",[19],{"name":10,"url":6},[21,22,23,24],"气候韧性","遥感监测","土地利用","参与式治理","10.67693\u002Fbjcr-4x243sna",{"doi":25,"openalex_id":27,"authors":28,"venue":10,"cited_by_count":15,"oa_url":36,"card":37,"direction":43,"ingested_from":44},"W7212300148",[29,32,34],{"name":30,"orcid":31},"Garba T","https:\u002F\u002Forcid.org\u002F0000-0002-7619-9023",{"name":33,"orcid":9},"Choji I D",{"name":35,"orcid":9},"Nasiru N M","https:\u002F\u002Fbexfordpublishing.co.uk\u002Fjournals\u002Fbjcr\u002Farticles\u002FBEX_JUL_26_079\u002Fdownload",{"tldr":38,"method":39,"finding":40,"direction":41,"opportunity":42},"研究尼日利亚半干旱区如何结合地方知识与分散土地管理，规划气候韧性建成环境。","多时相Landsat影像、NDVI、土地利用分类、气候与社会经济数据及访谈。","人口增长与农业扩张致植被退化、透水面减少，加剧热浪与洪水风险。","数字乡村与农业信息化","可探索遥感与地方知识融合的参与式土地治理模型，支撑半干旱区气候适应规划。","农业遥感与作物表型","openalex","2026-09-14T23:30:27.222417Z"]