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41.
漫衰减系数是水体重要的光学参数,是水生态系统的重要影响因素.利用2009年4月和2010年5月太湖实测数据,基于光学闭合原理,首先求解出490 nm处水体总的吸收系数[a(490)]和后向散射系数[bb(490)],进而研究了其与模拟的环境一号卫星多光谱数据不同波段遥感反射率之间的关系,在此基础上构建了太湖春季水体Kd(490)反演的半分析模型并将其应用到环境一号卫星影像上进行了太湖春季水体Kd(490)的遥感反演.结果表明,①基于光学闭合原理,可以较为准确地求解出a(490)和bb(490),a(490)实测值与求解值的平均相对误差为17.1%,bb(490)与模拟的环境一号卫星第四波段的遥感反射率具有很好的指数关系;②本研究所构建的模型具有较好的精度和稳定性,利用与卫星影像准同步的地面采样点对模型进行验证,得出模型反演的平均相对误差为21.6%,均方根误差为1.68 m-1;③太湖春季水体Kd(490)具有较强的空间差异性,太湖北部和东太湖大部分区域为Kd(490)的低值区,太湖西部和南部为Kd(490)的高值区,而太湖中部大部分区域介于两者之间. 相似文献
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植物绿化对交通噪声具有一定的阻挡与衰减作用,其衰减效果取决于绿化带的构成、纵深等。研究选取杭州西湖风景区5个绿化带和1个空地区,测量1/3倍频程下交通噪声的衰减情况。结果表明:10 m左右纵深的绿化带可使交通噪声降低3-5 dB;绿化带的降噪效果在中低频要好于高频,最高在315-400 Hz之间;绿化带辅助地形的下降可有效提高降噪效果;绿化带中乔木选用阔叶类植物的降噪量高于针叶类植物3 dB左右,在低频段降噪量的提升要高于中高频段。 相似文献
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目的 进行民机适航噪声横向衰减建模及特性研究。方法 对民机适航噪声横向衰减工程模型进行分析,建立其主要影响因素的计算模型,基于模型设计等效飞行试验方法,以及试验数据设计横向衰减分析流程,通过某型国产民机噪声飞行试验,对横向衰减特性及模型进行分析。结果 民机适航的横向噪声受声传播效应、地面散射效应和动力装置/机体噪声安装效应等影响较大,声传播效应和地面散射效应分别对高频和低频成分具有显著影响,动力装置/机体噪声安装效应导致的噪声指向性差异也是影响横向衰减的主要因素。对于民机适航噪声评价量,横向衰减模型能够得到与飞行试验结果趋势一致的结果,但工程应用中仍需通过飞行试验进行修正。结论 提出的民机适航噪声横向衰减影响因素的量化计算模型以及等效飞行试验方法,可用于国产民机低噪声设计、噪声适航审定和机场周围噪声污染计算,服务于国产民机设计及适航取证。 相似文献
46.
地铁运行引起的地面振动实测及传播规律分析 总被引:6,自引:0,他引:6
对地铁线路某区间段的地面振动进行实测,采集不同测线和不同测点处的水平方向、竖直方向加速度,并转化为傅里叶幅值谱对其进行衰减规律分析。利用公式将加速度记录换算为振级和分频振级,参照相关的国家标准分析不同距离处的振级和频率成分。对比同一加速度记录中的两对开方向列车引起的地面振动,进一步分析振动衰减的规律。所得到的结果可供地面建筑的隔振减振及城市轨道的规划和设计参考。 相似文献
47.
本文用统计能量分析的方法对一个放在扩散声场内的矩形隔声罩的声衰减进行了预测,计算了隔声罩声衰减随壁厚改变的变化,并讨论了罩内声吸收对声衰减的影响。 相似文献
48.
As a remedial option, the natural attenuation capacity of a petroleum contaminated groundwater at a military facility was examined. Hydrogeological conditions, such as high water level, permeable uppermost layer and frequent heavy rainfall, were favorable to natural attenuation at this site. The changes in the concentrations of electron acceptors and donors, as well as the relevant hydrochemical conditions, indicated the occurrence of aerobic respiration, denitrification, iron reduction, manganese reduction and sulfate reduction. The calculated BTEX expressed biodegradation capacity ranged between 20.52 and 33.67 mg/L, which appeared effective for the reduction of the contaminants levels. The contribution of each electron accepting process to the total biodegradation was in the order: denitrification > iron reduction > sulfate reduction > aerobic respiration > manganese reduction. The BTEX and benzene point attenuation rates were 0.0058-0.0064 and 0.0005-0.0032 day-1, respectively, and the remediation time was 0.7-1.2 and 2.5-30 years, respectively. The BTEX and benzene bulk attenuation rates were 8.69 × 10-4 and 1.05 × 10-3 day-1, respectively, and the remediation times for BTEX and benzene were 7.2 and 17.5 years, respectively. However, most of the natural attenuation occurring in this site can be attributed to dilution and dispersion. Consequently, the biodegradation and natural attenuation capacities were good enough to lower the contaminants levels, but their rates appeared to be insufficient to reach the remediation goal within a reasonable time frame. Therefore, some active remedial measures would be required. 相似文献
49.
L. Meredith B. Albanese T. Whyte T. Gibson M. Fitzharris M. Baldock 《Traffic injury prevention》2019,20(2):169-173
Objective: Fractures are a common injury among motorcycle riders and can have serious health implications. Impact protection (IP) has been designed to help prevent fractures, yet there are conflicting opinions as to whether this IP does in fact help prevent fractures in real-world crashes. This work aimed to (1) use simulated dummy impacts to examine whether existing types of IP could reduce the force transferred to the underlying bone to below fracture tolerance levels and (2) investigate whether current European Standard (EN 1621-1) test procedures for impact protectors designed for motorcyclists are sufficient to ensure fracture protection.Method: Twenty-three shoulder and 7 knee IP specimens were tested using a 23-kg impactor contacting axially along the clavicle and femur of an anthropomorphic test device (ATD) at an energy level corresponding to the fracture tolerance of these bones. Sixteen IP specimens were the same as those worn by motorcycle riders involved in crashes where injury outcome was known (knee: n?=?3; shoulder: n?=?13) and the IP had been previously tested to EN 1621-1. Other IP tested represented a wide range of IP available for purchase at a motorcycle accessory store. Double and triple layers of IP were also tested. Energy attenuated during the dummy impacts was compared to energy attenuated when tested to EN 1621-1.Results: Of the 23 shoulder IP tested, the average percentage reduction of transferred force to the shoulder from the baseline test was 7.6?±?4.8%. The percentage reduction of transferred force to the knee from the baseline was 43.9?±?7.5%. The entire group of knee IP tested reduced the transferred force to the knee to below the 10-kN injury threshold for the femur. There was a positive but nonsignificant correlation between the ATD test and the EN 1621-1 impact test performance, suggesting that the European standard test method likely provides a good indication of IP performance. However, given the low correlation coefficient, the relationship between IP performance in the European standard test method and injury protection remains unclear.Conclusion: Though the energy attenuation test method in the European standard may be an appropriate approach, distinct differences in injury protection performance observed between knee and shoulder IP indicate that there may be a need for different performance criteria for IP designated to protect different body regions. 相似文献
50.
光合有效辐射(photosynthetically active radiation,PAR)是指可以被植物利用并进行光合作用的那部分太阳辐射,其进入湖水后受光学组分(悬浮颗粒、有色可溶性有机物和浮游植物)的吸收和散射作用发生衰减,对湖泊生物的密度和分布具有重要影响.本研究构建了基于Landsat 8影像数据的较为清洁的新安江水库PAR漫衰减系数的遥感估算模型,进而分析其时空分布特征及主要影响因素.结果表明,利用Landsat 8的第二、三和第八波段构建的多元回归模型能够得到较为准确的估算结果,模型决定系数为0.87.利用独立样本对构建的模型验证,预测值和实测值相对误差绝对值均值为9.16%,均方根误差为0.06 m~(-1),由此可见利用Landsat 8数据的3个波段,采用多元回归模型能够较好地估算较清洁水体的PAR漫射衰减系数.基于14景Landsat 8影像发现,新安江水库PAR漫射衰减系数季节差异性明显,秋季(9~11月)和夏季(6~8月)PAR漫射衰减系数较高,分别为(0.82±0.60)m~(-1)和(0.77±0.41)m~(-1),而冬季(12~次年2月)和春季(3~5月)PAR漫射衰减系数相对较低,分别为(0.56±0.50)m~(-1)和(0.40±0.45)m~(-1).新安江水库PAR漫射衰减系数空间差异性显著,全湖PAR漫射衰减系数变化范围为(0.002~13.86)m~(-1),均值为(0.64±0.49)m~(-1).漫射衰减系数的季节变化主要是由季节性降雨和浮游植物季节性生长引起,空间差异性主要由外源河流输入和部分水域采砂过程导致悬浮物浓度变化引起. 相似文献