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小型水體的水環(huán)境評估:從局地到全球尺度

小型水體的水環(huán)境評估:從局地到全球尺度

定 價:¥80.00

作 者: 陳文君,賀斌
出版社: 重慶大學(xué)出版社
叢編項(xiàng):
標(biāo) 簽: 暫缺

ISBN: 9787568938402 出版時間: 2023-08-01 包裝: 平裝
開本: 16開 頁數(shù): 310 字?jǐn)?shù):  

內(nèi)容簡介

  本專著從局地到 視角,進(jìn)行小型水體的水環(huán)境評估。研究內(nèi)容始于中國南方廣泛分布的農(nóng)業(yè)水塘。專著提出保育這種有著千年以上歷史,但是容易被忽略的小型濕地生態(tài)系統(tǒng),存在多種技術(shù)和政策的挑戰(zhàn),并給出相應(yīng)的解決方案。接著,專著以長江下游茅山地區(qū)的局地低山丘陵小流域?yàn)槔群蟛捎冕槍π赃m配的HSPF水環(huán)境模型,從源碼層級改進(jìn)的SWAT水環(huán)境模型,定量評估農(nóng)業(yè)區(qū)域中多水塘-溝渠系統(tǒng)的氮素運(yùn)移、水資源調(diào)蓄、洪水?dāng)r截效應(yīng);并進(jìn)一步通過Matlab編程的線性混合效應(yīng)模型,定量評估了多水塘-溝渠系統(tǒng)不同區(qū)域氮磷水質(zhì)變化的內(nèi)外因素構(gòu)成。本專著以長江下游地區(qū)的橫山水庫為例,先后在流域降雨-產(chǎn)流數(shù)學(xué)模型的基礎(chǔ)上,采用三維計(jì)算幾何技術(shù)、WebGIS系統(tǒng)開發(fā)技術(shù),研究了小型水庫水位快速上升的三維動態(tài)模擬,以及泄洪調(diào)度管理工具。 終,將小型水體的具體類型泛化至非泛濫平原濕地,將研究尺度提升至 多個氣候帶,采用Meta分析等手段研究了 尺度下這種小型水體的新興模式,提出了相關(guān)可持續(xù)利用的政府間合作機(jī)遇。

作者簡介

暫缺《小型水體的水環(huán)境評估:從局地到全球尺度》作者簡介

圖書目錄

Chapter 1 Introduction
1.1 Background
1.2 Organization of this book
References
Chapter 2 Challenges and Solutions for Conserving Farm Ponds in Southern China
2.1 Introduction
2.2 Farm ponds in southern China
2.3 Why are these small and scattered waters important?
2.3.1 Hydrological regulation and ecological cleanup
2.3.2 Biodiversity conservation
2.3.3 Socioeconomic benefits
2.4 What are the threats and management challenges?
2.4.1 Inadequate planning and regulations
2.4.2 Rural nonpoint and mini-point source pollution
2.4.3 Climate change
2.4.4 Invasive species
2.4.5 Management challenges
2.5 Policies and approaches for farm pond conservation
2.5.1 Public awareness building
2.5.2 Top-down regulations and bottom-up engagement
2.5.3 Sustainable management and utilization
2.5.4 Inventory mapping
2.5.5 loT-based collaborative monitoring
2.5.6 Numerical assessment tools
2.6 Conclusions
References
Chapter 3 Assessment of Nitrogen Pollution in a Pond-rich Agricultural Watershed
3.1 Introduction
3.2 Materials and methods
3.2.1 Study area and data collection
3.2.2 HSPF description and data pre-processing
3.2.3 Sensitivity analysis, calibration, and validation
3.2.4 Source attribution of N pollution
3.3 Results and discussion
3.3.1 Calibrated parameters and modeling performance
3.3.2 Spatiotemporal analysis and source attributions of N pollution
3.3.3 Comparisons with previous studies on N source attribution
3.3.4 Implications to headwater agricultural watersheds
3.4 Conclusions
References
Chapter 4 Quantifying the Hydrologic Regulation Effects of Agricultural Multi-pond Systems
4.1 Introduction
4.2 Materials and methods
4.2.1 Study area and data
4.2.2 The SWAT-MPS model
4.2.3 Model calibration and validation
4.2.4 Model output and hydrologic analysis
4.3 Results
4.3.1 Calibrated parameters and model performance
4.3.2 Pond water balance and MPS identification

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