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微机化相位转矩测量系统
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作者 张凤生 徐志良 +1 位作者 师忠秀 张光辉 《机电工程》 CAS 1998年第6期11-13,共3页
基于相位转矩测量原理和“二次细分”比相法,研制了微机化相位转矩测量系统。该系统可有效克服传动系统的转速波动对测量的影响,具有精度高、动态特性好等优点。
关键词 转矩测量 位测量 微机细分比相
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光电式转矩测量系统 被引量:3
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作者 张凤生 徐松柳 张光辉 《仪表技术》 2001年第4期11-12,19,共3页
基于 8 0 5 1单片机和光电式转矩传感器构成一小型智能化的相位转矩测量系统。该系统硬件构成简单、工作可靠、测量的转速范围大 ( 4~ 80 0 0rpm)。具有自动调零、测量结果存储、显示、超载
关键词 转矩测量 单片机 细分比相 传感器
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Greater soil microbial biomass loss at low frequency of N addition in an Inner Mongolia grassland 被引量:1
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作者 Qiushi Ning Liangchao Jiang +3 位作者 Ruzhen Wang Jing Wang Xingguo Han Junjie Yang 《Journal of Plant Ecology》 SCIE CSCD 2022年第4期721-732,共12页
Soil microbial biomass is critical for biogeochemical cycling and serves as precursor for carbon(C)sequestration.The anthropogenic nitrogen(N)input has profoundly changed the pool of soil microbial biomass.However,tra... Soil microbial biomass is critical for biogeochemical cycling and serves as precursor for carbon(C)sequestration.The anthropogenic nitrogen(N)input has profoundly changed the pool of soil microbial biomass.However,traditional N deposition simulation experiments have been exclusively conducted through infrequent N addition,which may have caused biased effects on soil microbial biomass compared with those under the natural and continuous N deposition.Convincing data are still scarce about how the different N addition frequencies affect soil microbial biomass.By independently manipulating the frequencies(2 times vs.12 times N addition yr^(–1))and the rates(0–50 g N m^(−2) yr^(−1))of N addition,our study aimed to examine the response of soil microbial biomass C(MBC)to different N addition frequencies with increasing N addition rates.Soil MBC gradually decreased with increasing N addition rates under both N addition frequencies,while the soil MBC decreased more at low frequency of N addition,suggesting that traditional studies have possibly overestimated the effects of N deposition on soil microbial biomass.The greater soil microbial biomass loss with low N frequency resulted from the intensifed soil acidifcation,higher soil inorganic N,stronger soil C and N imbalance,less net primary production allocated to belowground and lower fungi to bacteria ratio.To reliably predict the effects of atmospheric N deposition on soil microbial functioning and C cycling of grassland ecosystems in future studies,it is necessary to employ both the dosage and the frequency of N addition. 展开更多
关键词 nitrogen addition frequency temperate grasslands nutrient imbalance fungi to bacteria ratio plant–microbe interaction belowground net primary production Shannon–Weiner diversity index
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