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A framework of the planning of priority revegetation areas for debris flow mitigation based on microclimate processes in dry-hot watersheds
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作者 LU Yafeng ZHOU Xiaokang 《Journal of Mountain Science》 2025年第5期1723-1733,共11页
Vegetation restoration is a critical strategy for mitigating debris flow hazards by stabilizing slopes and modifying hydrological processes.Effective planning of priority restoration areas is particularly essential in... Vegetation restoration is a critical strategy for mitigating debris flow hazards by stabilizing slopes and modifying hydrological processes.Effective planning of priority restoration areas is particularly essential in dry-hot valley regions,where extreme hydrothermal conditions pose significant challenges.This study presents a novel framework that integrates microclimatic variables,such as temperature lapse rates,to enhance the spatial precision of revegetation efforts.The Reshuihe watershed in Southwest China,a representative dry-hot valley,was chosen as the study area.By analyzing hourly temperature and rainfall across an elevation gradient,a quadratic relationship between temperature lapse rates and weak rainfall events was identified,underscoring the role of microclimatic processes in influencing rainfall distribution and plant-available water.Rainfall peaks were observed when the temperature lapse rate was approximately 4.5°C/km.This relationship was incorporated into a cost-based restoration framework using the Marxan model,optimizing the spatial allocation of priority areas for revegetation.Results demonstrated that integrating microclimatic variables significantly improved the effectiveness of revegetation strategies,particularly for reducing debris flow risks.The lowest restoration costs were observed between elevations of 3200 m and 3300 m,where strong correlations between temperature lapse rates and rainfall were recorded.Priority restoration areas covered 41 km^(2),targeting zones with high debris flow risks.These findings highlight the value of incorporating microclimatic data into revegetation planning,enabling cost-effective and ecologically sustainable hazard mitigation in regions vulnerable to hydrological hazards. 展开更多
关键词 REVEGETATION microclimate processes Temperature lapse rate Dry-hot valley Priority revegetation areas
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Microclimate and Its Formation Mechanism in Cunninghamia lanceolata Hook. Plantation Ecosystems in the Subtropical Zone of China 被引量:2
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作者 张合平 田大伦 +1 位作者 康文星 艾顺儒 《Forestry Studies in China》 CAS 2001年第2期26-31,共6页
Microclimate characteristics and related environmental energy mechanisms were examined based on the long term located observations in the mature, thinned and young Cunninghamia lanceolata plantation ecosystems in... Microclimate characteristics and related environmental energy mechanisms were examined based on the long term located observations in the mature, thinned and young Cunninghamia lanceolata plantation ecosystems in western Hunan Province, China. The results show that the mature plantation ecosystem can improve the microclimate significantly by regulating the amount and spatial distribution of environmental energy, which delineates the pattern of the microclimate in forest ecosystems in the process of ecological restoration. Compared with the young plantation, the mature plantation ecosystem decreased annual mean air temperature by 0 4℃. The maximum decrease in monthly mean air temperature was 2 3℃. The mature plantation ecosystem decreased annual mean ground temperature by 1 2℃ with a maximum decrease in monthly mean ground temperature of 2 3℃. Mainly due to the dense canopy, the mature forest ecosystem regulates the distribution of radiation energy, and expenditure ratios of heat budget and principal energy components to decrease temperature or make it even. 展开更多
关键词 Cunninghamia lanceolata plantation ecosystem microclimate environmental energy
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Effects of N Rates on Canopy Microclimate and Population Health in Irrigated Rice 被引量:18
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作者 贺帆 《Agricultural Science & Technology》 CAS 2009年第6期79-83,共5页
Objective The aim was to elucidate the effects of N rates on rice canopy microclimate and community health so as to provide a sci- entific basis for studying the production potential in irrigated rice with healthy can... Objective The aim was to elucidate the effects of N rates on rice canopy microclimate and community health so as to provide a sci- entific basis for studying the production potential in irrigated rice with healthy canopy. Method The effects of rice population structure traits under different N rates on rice canopy temperature, relative humidity ( RH), light transmittance and sheath blight were studied by using Sunscan canopy analysis system and HOBO( Pro Temp/RH IS logger). Result The results showed that leaf area index, plant height and tiller number had significant effects on canopy cooling, RH enhancing and light reducing. Extremely significant multiple linear regression relationships existed among canopy day temperature, day RH, LAI and tiller number, and among light transmittance, tiller number and plant height. At flowering stage, per unit LAI could result in a day-maximum-temperature (Tmax) deceasing of 0.87℃ and a day-minimum-RH (RHmin) enhancing of 2.5% within canopy. Similarly, 100 plants per ms could respectively cause a Tmax deceasing of 1.23℃ and an RHmin enhancing of 3.3% in rice canopy. And per 10 cm plant height and 100 plants per m^2 could respectively reduce 9.3% and 7.8% of light in canopy. Conclusion Sheath blight disease index was significantly enhanced as the canopy day temperature decreased, day RH increased and light transmittance reduced. Bigger canopy from higher nitrogen level treatment leads to a more stable canopy microclimate with little changes in temperature and RH during day and night, which has the risk of worsening canopy health. Thus, moderately controlling the space development of canopy is the basis of constructing healthy canopy in rice. 展开更多
关键词 RICE N rates Canopy microclimate Population structure Sheath blight
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基于微气候特征的莫高窟第87窟预防性保护措施优化
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作者 张艳杰 郭青林 +1 位作者 王亚军 张正模 《地震工程学报》 北大核心 2026年第1期70-79,113,共11页
为制定科学的洞窟调查与维护时间表以降低开门引起的窟内微气候波动,对莫高窟底层小型洞窟第87窟窟内外微环境进行监测、分析。分别对第87窟窟内外温度(T)、相对湿度(RH)和绝对湿度(AH)以及窟内外差值的变化特征进行分析,对窟内外温度... 为制定科学的洞窟调查与维护时间表以降低开门引起的窟内微气候波动,对莫高窟底层小型洞窟第87窟窟内外微环境进行监测、分析。分别对第87窟窟内外温度(T)、相对湿度(RH)和绝对湿度(AH)以及窟内外差值的变化特征进行分析,对窟内外温度差和相对湿度差进行曲线拟合与方程求解,找出不同季节窟内外空气的对流方式以及相应的壁画吸-放湿模型,对露点温度年变化特征进行探讨。得到窟内外温度混合线性模型,即窟外温度每增加1℃,窟内温度增加0.395℃,以此结果找出窟内外温湿度差的极值和零值日期。研究结果表明,洞窟调查和维护的最佳时间分别为3月、4月、9月、10月;冬季和夏季打开窟门均易发生窟内水汽凝结。研究结果对第87窟窟内壁画的预防性保护具有重要意义,也可为其他类似洞窟的保护措施优化提供理论支持和参考。 展开更多
关键词 文化遗产 莫高窟 微气候监测 空气交换 预防性保护
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Biological Basis & Microclimate Effects of Intercropping in Jujube Field
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作者 高素玲 常介田 《Agricultural Science & Technology》 CAS 2014年第3期503-505,共3页
Objective] This study aimed to explore the biological basis and microcli-mate effects in intercropping jujube orchard. [Method] From 2009 to 2011, jujube was intercroped with wheat, peanut, soybean, garlic, watermelon... Objective] This study aimed to explore the biological basis and microcli-mate effects in intercropping jujube orchard. [Method] From 2009 to 2011, jujube was intercroped with wheat, peanut, soybean, garlic, watermelon, vegetables etc. By fixed observation and simultaneous mobile observation, the field microclimate factors such as the air temperature, surface temperature, air relative humidity, wind speed, etc. were measured, with mono-crop farmland as the control. [Result] The competi-tion relationship existed between jujube trees and the intercropped plants for re-sources such as il umination, fertilizer, and water; however there were differences in phenological phases and the critical periods in needing for water, fertilizer and il u-mination between jujube and intercropped plants. Meanwhile, there was significant difference (P〈0.05) in the variation of agricultural microclimate environment in jujube field compared with that in control farmland. Compared with the control, the air tem-perature in intercropping jujube orchard was reduced by 0.2 to 0.7 ℃, the earth surface temperature reduction ranged from 2.1 to 2.5 ℃, the relative air humidity increased by 3.7% to 6.8% and the wind speed decreased by 0.2 to 0.4 m/s. [Conclusion] Al above results showed that intercropping in jujube orchard could be promoted in central China and northern China areas. 展开更多
关键词 BIOLOGY microclimate INTERCROPPING Jujube orchard Effect
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基于高标准农田小气候要素的冬小麦土壤相对湿度模拟模型
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作者 谢家旭 成林 +1 位作者 刘志雄 董宛麟 《中国农业气象》 2026年第1期73-82,共10页
利用2021−2023年冬小麦生长期(10月−翌年5月)高标准农田小气候监测数据,在分析土壤水分对农田小气候要素响应滞后性的基础上,引入Optuna框架的超参数优化方法建立随机森林(Random forest,RF)、BP神经网络(BP neural network,BPNN)和支... 利用2021−2023年冬小麦生长期(10月−翌年5月)高标准农田小气候监测数据,在分析土壤水分对农田小气候要素响应滞后性的基础上,引入Optuna框架的超参数优化方法建立随机森林(Random forest,RF)、BP神经网络(BP neural network,BPNN)和支持向量机回归(Support vector regression,SVR)3种机器学习模型,预估3d、5d和10d共3个预见期5个土层深度(10cm、20cm、30cm、40cm和50cm)的土壤相对湿度,以期为高标准农田土壤水分预估提供参考。结果表明:(1)冬小麦生长期内,河南省高标准农田5个土层深度土壤相对湿度呈波动下降趋势,播种−出苗期5个土层的土壤相对湿度的时段平均值最大(90.4%),抽穗−成熟期最小(73.9%)。(2)河南省高标准农田土壤相对湿度对不同小气候要素响应时间与强弱不一致。其中,对10cm、20cm和50cm处地温响应最慢但最强,响应时间集中在5~10d,相关系数为0.32~0.57;对空气相对湿度的响应最快但最弱,响应时间集中在1~3d,相关系数小于0.20。随着土层深度增加,土壤相对湿度与降水量、日平均气温和日最高气温相关关系呈递减趋势,与日最大风速、3个土层深处地温(10cm、20cm和50cm)相关关系则逐渐增加。(3)不同预见期下5个土深处土壤相对湿度的模拟模型中,RF模型精度最高,决定系数(R^(2))为0.87~0.98,均方根误差(RMSE)为0.02~0.05,平均绝对误差(MAE)为0.01~0.03;SVR模型次之(R^(2)为0.77~0.97,RMSE为0.03~0.07,MAE为0.02~0.04);BPNN模型精度较低(R^(2)为0.60~0.97,RMSE为0.04~0.07,MAE为0.01~0.06)。综合评价RF模型更适合高标准农田土壤墒情短期预测,可为河南高标准农田精准水分管理提供技术支撑。 展开更多
关键词 高标准农田 小气候要素 机器学习 土壤相对湿度
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不同林龄蓝花楹林内小气候对比
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作者 雷锦富 刘学锋 +3 位作者 游文燕 李小梅 张学展 王浩林 《桉树科技》 2026年第1期69-78,共10页
以不同林龄的蓝花楹(Jacaranda mimosifolia)人工林为研究对象,通过测定林内小气候因子、林分结构及林下植被生物量,探讨两种林龄蓝花楹人工林主要气候要素的差异及其影响因素。结果表明:蓝花楹幼林与成林在树高、平均冠幅、胸径、冠高... 以不同林龄的蓝花楹(Jacaranda mimosifolia)人工林为研究对象,通过测定林内小气候因子、林分结构及林下植被生物量,探讨两种林龄蓝花楹人工林主要气候要素的差异及其影响因素。结果表明:蓝花楹幼林与成林在树高、平均冠幅、胸径、冠高和郁闭度等方面差异显著(P<0.05),成林的各项指标均高于幼林,而枝下高无显著差异。在林下植被方面,幼林以草本植物为主,木本植物较少或受到抑制,而成林的林下植被物种多样性更高,结构更复杂。小气候分析显示,幼林对太阳辐射、温度和湿度等因子的变化较敏感,而成林的小气候较为稳定,受外界环境影响较小。林分结构(如树高、冠幅)显著影响小气候特征,且小气候因子间存在相互作用,共同塑造不同林龄蓝花楹人工林的微环境特征。成林的植被物种丰富度和重要值高于幼林,以灌木和藤本植物为主,而幼林以草本植物占主导;幼林较低的郁闭度导致林下太阳辐射和温度较高,从而影响了植被物种多样性。 展开更多
关键词 蓝花楹人工林 小气候 林龄
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Microclimate regimes following gap formation in a montane secondary forest of eastern Liaoning Province, China 被引量:33
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作者 ZHU Jiao-jun TAN Hui +2 位作者 LI Feng-qin CHEN Mei ZHANG Jin-xin 《Journal of Forestry Research》 SCIE CAS CSCD 2007年第3期167-173,共7页
In order to improve the understanding of the role of a canopy opening/gap on the physical environments in a secondary forest in Northeastern China, a case study was conducted in and around a small irregular gap in a m... In order to improve the understanding of the role of a canopy opening/gap on the physical environments in a secondary forest in Northeastern China, a case study was conducted in and around a small irregular gap in a montane secondary forest. The secondary forest, which was severely disturbed by human beings about 50 years ago, was dominated by Quercus mongolica and Fraxinus rhynchophyllaan. Temporal variation in photosynthetic photon flux density (PPFD), air temperature (TA) at 10 cm above the ground, soil temperature (Ts) and soil water content (SWC) at top-layer (0-15 cm) and sub-layer (15-30 cm) were measured from May to September after the second year since the formation of the small gap (the ratios of gap diameter to stand height were less than 0.5) in 2006 respectively. Results indicated that the highest value of PPFD occurred at the northern edge of the gap, particularly at the beginning of the growing season in May. On sunny days, the highest value of PPFD appeared earlier than that on overcast days. Maximum and mean values of TAwere higher in the northern part of the gap, and the minimum values of TAwere at the southern edge of the gap. Soil temperature varied obviously in the gap with the range from 1 to 8 ℃. Maximum values of Ts occurred at the northern part of the gap, which was significantly correlated with the maximum values of TA (R = 0.735, P〈0.05). SWC was higher in the top-layer (0-15 cm) than that in sub-layer (15-30 cm), but the difference of them was not significant (p〉0.05), which might be attributed to the small gap size and the effects of aboveground vegetations. From these results, the maximum of PPFD in the study area occurred at the northern part of the gap, which was consistent with the results observed in north hemisphere, but the occurrence time varied with the differences of the latitudes. The highest values of air and soil temperatures also occurred in the northern part of the gap because they were affected by the radiation. However, the variation of temperature in July was different from other months due to the influence of gap size. And the values of soil water content were neither higher in the gap in the wet season nor lower in the dry season, which might be affected by the gap size and topography the gap located. The variations of light, soil and air temperatures, and soil moisture in this small irregular gap might be related to the effects of the micro-site, which affects the regeneration of plant species. 展开更多
关键词 Forest gap microclimate PPFD Temperature Soil moisture
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CFD Based Study of Heterogeneous Microclimate in a Typical Chinese Greenhouse in Central China 被引量:3
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作者 WANG Xiao-wei LUO Jin-yao LI Xiao-ping 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2013年第5期914-923,共10页
Indoor microclimate is important for crop production and quality in greenhouse cultivation. This paper focuses on microclimate study based on a computational fluid dynamics (CFD) model of a typical plastic greenhou... Indoor microclimate is important for crop production and quality in greenhouse cultivation. This paper focuses on microclimate study based on a computational fluid dynamics (CFD) model of a typical plastic greenhouse (with a sector shape vertical cross-section) popularly used in central China. A radiation model is added into the CFD model so as to simulate coupling of convective transfers and radiative exchanges at the cover and the roof, instead of using the usual coupling approach based on energy balance. In addition, a fractal permeability model is innovatively adopted in the modeling of the crop canopy. Compared the numerical results with measured experimental data, the model simulation is proved with success. This model then is used to explore the microclimate variable distributions in the greenhouse. It shows that the airflow pattern, temperature and humidity profiles are different from those in a sawtooth Mediterranean- type greenhouse. The study suggests that this deliberately developed CFD model can be served as a useful tool in macroclimate research and greenhouse design investigating. 展开更多
关键词 plastic greenhouse CFD simulation microclimate fi'actal coupled model
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Effects of vegetation restoration on local microclimate on the Loess Plateau 被引量:4
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作者 WANG Chenxi LIANG Wei +3 位作者 YAN Jianwu JIN Zhao ZHANG Weibin LI Xiaofei 《Journal of Geographical Sciences》 SCIE CSCD 2022年第2期291-316,共26页
With the implementation of the Grain for Green Project,vegetation cover has experienced great changes throughout the Loess Plateau(LP).These changes substantially influence the intensity of evapotranspiration(ET),ther... With the implementation of the Grain for Green Project,vegetation cover has experienced great changes throughout the Loess Plateau(LP).These changes substantially influence the intensity of evapotranspiration(ET),thereby regulating the local microclimate.In this study,we estimated ET based on the Penman-Monteith(PM)method and Priestley-Taylor Jet Propulsion Laboratory(PT-JPL)model and quantitatively estimated the mass of water vapor and heat absorption on the LP.We analyzed the regulatory effect of vegetation restoration on local microclimate from 2000 to 2015 and found the following:(1)Both the leaf area index(LAI)value and actual ET increased significantly across the region during the study period,and there was a significant positive correlation between them in spatial patterns and temporal trends.(2)Vegetation regulated the local microclimate through ET,which increased the absolute humidity by 2.76-3.29 g m^(-3),increased the relative humidity by 15.43%-19.31%and reduced the temperature by 5.38-6.43℃per day from June to September.(3)The cooling and humidifying effects of vegetation were also affected by the temperature on the LP.(4)Correlation analysis showed that LAI was significantly correlated with temperature at the monthly scale,and the response of vegetation growth to temperature had no time-lag effect.This paper presents new insights into quantitatively assessing the regulatory effect of vegetation on the local microclimate through ET and helps to objectively evaluate the ecological effects of the Grain for Green Project on the LP. 展开更多
关键词 vegetation restoration EVAPOTRANSPIRATION cooling and humidifying effect microclimate regulation
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Optimization of rhizosphere cooling airflow for microclimate regulation and its effects on lettuce growth in plant factory 被引量:3
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作者 LI Kun FANG Hui +1 位作者 ZOU Zhi-rong CHENG Rui-feng 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第10期2680-2695,共16页
In plant factories,the plant microclimate is affected by the control system,plant physiological activities and aerodynamic characteristics of leaves,which often leads to poor ventilation uniformity,suboptimal environm... In plant factories,the plant microclimate is affected by the control system,plant physiological activities and aerodynamic characteristics of leaves,which often leads to poor ventilation uniformity,suboptimal environmental conditions and inefficient air conditioning.In this study,interlayer cool airflow(ILCA)was used to introduce room air into plants’internal canopy through vent holes in cultivation boards and air layer between cultivation boards and nutrient solution surface(interlayer).By using optimal operating parameters at a room temperature of 28℃,the ILCA system achieved similar cooling effects in the absence of a conventional air conditioning system and achieved an energy saving of 50.8% while bringing about positive microclimate change in the interlayer and nutrient solution.This resulted in significantly reduced root growth by 41.7% without a negative influence on lettuce crop yield.Future development in this precise microclimate control method is predicted to replace the conventional cooling(air conditioning)systems for crop production in plant factories. 展开更多
关键词 air movement environmental control microclimate water cooling root and shoot growth
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Improvement of Outdoor Microclimate Comfort of Rural Residence in Southwest Mountainous Area through Plant Application 被引量:3
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作者 CHEN Ruizhi LI Min 《Journal of Landscape Research》 2016年第4期39-41,共3页
Improvement of microclimate comfort is good to save energy,and create and improve communication space,and promote sustainable development of countryside.Wind is an important factor that influences outdoor microclimate... Improvement of microclimate comfort is good to save energy,and create and improve communication space,and promote sustainable development of countryside.Wind is an important factor that influences outdoor microclimate and plant is an economic,high-efficiency and healthy choice to improve wind environment.This article discussed technical strategies of improving the microclimate comfort of rural residence in southwest mountainous areas,by taking use of native vegetations.The strategy is to set up the wind-guide or wind-break plant landscape system through site planting,courtyard planting and residence planting. 展开更多
关键词 Country settlements microclimate comfort Plant
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Microclimate Regulation of Urban Road Landscapes and PM 2.5 Control Measures 被引量:1
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作者 TANG Zhuning NIE Wei 《Journal of Landscape Research》 2013年第10期19-20,共2页
This paper proposed through systematic analysis that road tail gas is an important source of PM2.5,and elaborated the infl uence of urban road space forms and road landscapes on urban microclimate,on the basis of whic... This paper proposed through systematic analysis that road tail gas is an important source of PM2.5,and elaborated the infl uence of urban road space forms and road landscapes on urban microclimate,on the basis of which gave corresponding landscape design suggestions for PM2.5 control. 展开更多
关键词 URBAN ROAD microclimate LANDSCAPE design PM2.5
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CFD Assisted Study of Multi-Chapels Greenhouse Vents Openings Effect on Inside Airflow Circulation and Microclimate Patterns 被引量:1
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作者 Allal Senhaji Mhamed Mouqallid Hassan Majdoubi 《Open Journal of Fluid Dynamics》 2019年第2期119-139,共21页
The aim of this work is to study and quantify the air mass flow exchanged between inside and outside of the greenhouse, in order to determine the ventilation openings layout and the design effect on greenhouse airflow... The aim of this work is to study and quantify the air mass flow exchanged between inside and outside of the greenhouse, in order to determine the ventilation openings layout and the design effect on greenhouse airflow and microclimate distribution. The study was conducted over a 945 m2 multi-chapels arched greenhouse with a polyethylene cover and has thirteen crop rows oriented from north to south;the greenhouse was equipped with side wall and roof vents openings. A simulation was performed using different arrangements and configurations of ventilation openings with the same wind direction. Numerical simulation has been adopted in three dimensions (CFD), using the Fluent computer code which relies on the resolution of the Navier-Stokes equations. These equations were solved in the presence of the turbulence model (k - ε) and the Boussinesq model equation adopted to incorporate buoyancy forces. The effects of solar and atmospheric radiation were included by solving the radiative transfer equation (RTE), using Discrete Ordinate (DO) model. The effects of the roof openings, the presence of anti-insect screens and crops orientation were investigated and quantified. In a 3-span greenhouse with an anti-aphid in-sect screen in the vent openings, combining roof and sidewall vents gave a ventilation rate per unit opening area that was 1.4 times more than with only side vents. In the latter case, the difference of temperature between the inside and the outside of the greenhouse was greater than 3&deg;C. Numerical simulations with an anti-insect screen having a porosity of 56% showed that the air exchange rate with combined ventilation was reduced by 48%. Finally, the paper focused on the effect of vent arrangement on the efficiency of the ventilation and the distribution of the microclimate inside the greenhouse. Results showed that computed ventilation rates varied from 53.43 to 70.95 kg/s, whereas temperature differences varied from 7.15&deg;C to 10.14&deg;C. This study also showed that other characteristics such as climate heterogeneity must be investigated in order to define the best ventilation configuration. 展开更多
关键词 GREENHOUSE microclimate Computational Fluid Dynamics (CFD) Ventilation Solar Radiation
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Microclimate modification using eco-friendly nets and floating row covers improves tomato (<i>Lycopersicon esculentum</i>) yield and quality for small holder farmers in East Africa 被引量:1
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作者 Mwanarusi Saidi Elisha O. Gogo +2 位作者 Francis M. Itulya Thibaud Martin Mathieu Ngouajio 《Agricultural Sciences》 2013年第11期577-584,共8页
Tomato (Lycopersicon esculentum) is one of the important vegetables in supplying vitamins, minerals and fiber to human diets worldwide. Its successful production in the tropics is, however, constrained by environmenta... Tomato (Lycopersicon esculentum) is one of the important vegetables in supplying vitamins, minerals and fiber to human diets worldwide. Its successful production in the tropics is, however, constrained by environmental variations especially under open field conditions. Two trials were conducted at the Horticulture Research and Teaching Field, Egerton University, Kenya to evaluate the effects of agricultural nets (agronets) herein called eco-friendly nets (EFNs) and floating row covers (FRCs) on microclimate modification, yield, and quality of tomato. A randomized complete block design with five replications was used. Tomato plants were grown under fine mesh EFN (0.4-mm pore diameter) cover, large mesh EFN (0.9-mm pore diameter) cover or FRC. The EFN and FRC were maintained either permanently closed or opened thrice a week from 9 am to 3 pm. Two open control treatments were used: unsprayed (untreated control) or sprayed with chemicals (treated control). The use of EFN or FRC modified the microclimate with higher temperatures, lower diurnal temperature ranges, and higher volumetric water content recorded compared with the controls. On the other hand, light quantity and photosynthetic active radiation were reduced by the use of EFN and FRC compared with the controls. The use of FRC and EFN resulted in more fruit and higher percent in marketable yield compared with open field production. Fruit quality at harvest was also significantly improved by the use of EFN and FRC. Fruits with higher total soluble solids (TSS), lower titratable acidity (TA), and higher sugar acid ratio were obtained in EFN and FRC treatments compared with the controls. Fruits harvested from EFN and FRC were also firmer compared with control fruits. These findings demonstrate the potential of EFN and FRC in modifying microclimate conditions and improving yields and quality of tomato under tropical field conditions. 展开更多
关键词 LYCOPERSICON esculentum Solanum lycopersicum microclimate MODIFICATION Protected Cropping TOMATO Yields TOMATO Quality
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Argentinian Yungas Forest Fragmentation: Effects on Aboveground Biomass, Microclimate and Carbon Storage 被引量:1
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作者 Silvina Manrique Perla Vacaflor Norma Cruz 《Open Journal of Forestry》 2018年第1期117-139,共23页
The Argentinian Yungas ecosystem, the more extensive of the two richest biodiversity ecoregions of the country, is subject to rapid deforestation and fragmentation. Because these fragments are the future biodiversity ... The Argentinian Yungas ecosystem, the more extensive of the two richest biodiversity ecoregions of the country, is subject to rapid deforestation and fragmentation. Because these fragments are the future biodiversity reserves of this ecosystem, it was interesting to know if they constitute small-scale replicas of the forest from which they were detached. Our objective was to characterise the fragments and compare them with sectors of continuous forest by studying the aboveground tree biomass (for the five most representative forest species), microclimate (three variables) and edaphic factors (three) as a function of distance from forest edge at 15, 25, 50, 100 and 200 meters. We selected two size categories for fragments: 5 - 10 ha and 100 - 150 ha, located in the lower Yungas forest (LYF). We did sampling during the dry and wet seasons. As a result, in the larger fragments, the distance exerts a significant effect on the records of the microclimate and edaphic variables, gradually modifying them from the edge to the interior (up to at least 100 meters). The variations are more evident in the wet season. Solar radiation and relative humidity were two of the factors with greater response (Spearman r= -0.89;p p &#183ha-1, for small and big fragments, respectively). The five species studied show less density and trees of reduced dimensions (lower dbh and height). Fast-growing pioneer plant species and disturbance-loving lianas accompany them. Edge plant composition presents notorious changes in the bigger fragments. Biomass and ecosystem processes such as carbon cycling, which have been modified into fragments, both are directly associated with the structure and functioning in LYF remnants. The human and animal intervention detected in the area could be interacting synergistically with the microclimate and biological changes observed and potentiate the effects of degradation in the fragments, creating conditions of greater threat to LYF’s biodiversity. However, the management of the LYF ecosystem within an adequate land use scheme could conserve and even encourage the recovery of the fragments ensuring a natural legacy of great importance for the country. Financing opportunities and globally assumed responsibilities in the context of climate change could constitute a favorable framework for the implementation of strategies to safeguard these forests. 展开更多
关键词 BIOGEOCHEMICAL CARBON Cycle Biomass CARBON SEQUESTRATION Edge EFFECTS microclimate Changes
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Buffered microclimate determines the presence of Salamandra corsica
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作者 Daniel Escoriza Axel Hernandez 《Journal of Forestry Research》 SCIE CAS CSCD 2021年第3期1089-1093,共5页
Numerous amphibian species occupy microhabitats with buffered thermal and moisture conditions,typically under forest canopies.Here,we assessed whether the insular endemic Salamandra corsica also uses this type of habi... Numerous amphibian species occupy microhabitats with buffered thermal and moisture conditions,typically under forest canopies.Here,we assessed whether the insular endemic Salamandra corsica also uses this type of habitat,which could have important implications for its conservation.We used data loggers to record the air temperature and air humidity at 4 h intervals over a period of 2 years,at 13 stations with a confirmed presence of S.corsica.These data were compared with those recorded at Corsican weather stations and those generated by a climate model(WorldClim 2).The weather station data showed significant deviations from the probe data,by an average of-1.26℃(minimum temperature),+2.61℃(maximum temperature),and-0.04%(relative humidity).Similarly,the WorldClim 2 data showed significant deviations from the probe data,by an average of-2.49°C(minimum temperature)and+1.69℃(maximum temperature).These discrepancies refl ect the use of densely vegetated and topographically complex habitats by S.corsica,which reduce temperature fluctuations.Overall,our results highlight the importance of natural vegetal cover in the conservation of populations of this endemic salamander. 展开更多
关键词 Fire salamander Island endemic microclimate Probe Threatened species
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Seasonal metabolic flexibility is correlated with microclimate variation in horned larks and house sparrows
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作者 Paige OBOIKOVITZ David L.SWANSON 《Current Zoology》 SCIE CAS CSCD 2022年第2期199-210,共12页
Maximum and minimum metabolic rates in birds are flexible traits and such flexibility can be advantageous in variable climates.The climatic variability hypothesis(CVH)posits that more variable climates should result i... Maximum and minimum metabolic rates in birds are flexible traits and such flexibility can be advantageous in variable climates.The climatic variability hypothesis(CVH)posits that more variable climates should result in greater metabolic flexibility for geographically distinct populations.Whether the CVH applies to sympatric species occupying microclimates differing in variability is unknown.Microclimates of open habitats are likely more variable than those of sheltered habitats.If the CVH extends to microclimates,we expect birds from open habitats to show greater flexibility than those from sheltered habitats.To test this extension of the CVH,we compared seasonal variation in microclimates and metabolic rates for sympatric horned larks Eremophila alpestris,which occupy open habitats,and house sparrows Passer domesticus,which occupy sheltered habitats.We measured operative temperature(T_(e′) an integrative measure of the thermal environment),summit metabolic rate(M_(sum′) maximal cold-induced metabolic rate),and basal metabolic rate(BMR,minimal maintenance metabolic rate)in summer and winter.For both winter and summer,daily minimum Te was similar between open and sheltered habitats but maximum Te was higher for open habitats.Winter microclimates,however,were colder for open than for sheltered habitats after accounting for convective differences.Both species increased M_(sum) in winter,but seasonal M_(sum) flexibility was greater for larks(43%)than for sparrows(31%).Winter increases in BMR were 92.5% and 11% for larks and sparrows,respectively,with only the former attaining statistical significance.Moreover,species*season interactions in general linear models for whole-organism metabolic rates were significant for BMR and showed a similar,although not significant,pattern for M_(sum),with greater seasonal metabolic flexibility in horned larks than in house sparrows.These results suggest that extending the CVH to sympatric bird species occupying different microclimates may be valid. 展开更多
关键词 climatic variability hypothesis Eremophila alpestris metabolic flexibility metabolic rates microclimates Passer domesticus
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Effects of mulching practice on microclimate in greenhouse
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作者 安志信 鞠珮华 +2 位作者 李卫民 王家贤 郭富常 《华北农学报》 CSCD 北大核心 1994年第S2期98-103,共6页
After ground-mulching in plastic house.it is shown that it may display obvious effect on soil temperature.increase,but almost no effect on the internal air temperature,and light conditions can be improved,but the side... After ground-mulching in plastic house.it is shown that it may display obvious effect on soil temperature.increase,but almost no effect on the internal air temperature,and light conditions can be improved,but the side effects were presented on the relative humidity and the concentration of carbon dioxide. 展开更多
关键词 MULCHING GREENHOUSE .microclimate
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Actual Measurement of the Microclimate Environment of Green Spaces and Dynamic Simulation of Building Height in Xijing Community of Beijing
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作者 ZHANG Qi DUAN Jiajia YANG Xin 《Journal of Landscape Research》 2019年第3期14-18,22,共6页
In this paper, three types of green spaces in Xijing Community in Shijingshan District of Beijing were selected for as the measuring points, the HOBO portable weather station was used to monitor the microclimate envir... In this paper, three types of green spaces in Xijing Community in Shijingshan District of Beijing were selected for as the measuring points, the HOBO portable weather station was used to monitor the microclimate environmental changes in the same period and summarize the data of microclimate factors. The effectiveness of the simulation was verified by comparing the measured data with the simulated data obtained through ENVI-met. And strategies for microclimate adaptive design in residential areas were proposed according to the microclimate environmental characteristics of several green spaces. 展开更多
关键词 Xijing COMMUNITY Green SPACE microclimate ENVIRONMENT ENVI-met dynamic simulation
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