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211.
为了研究食品安全生产及监管的内在机理、影响因素及监管模式,采用演化博弈论方法建立了政府监管部门与食品企业之间的博弈模型,运用复制动态方程和系统动力学方法深入分析了食品安全生产中相关主体的决策选择。结果表明:食品企业在追求利益最大化的前提下须主动重视食品安全问题,食品企业的策略选择受安全生产投入成本、处罚成本和声誉收益的影响;政府监管部门的监管行为受监管成本、外部负效益及社会成本等多方因素的影响。因此,增大监管部门惩处力度、降低监管成本、完善社会公众监督机制、强化声誉效应是食品安全问题得以解决的有力保障。 相似文献
212.
L.L. Smith A.L. Subalusky C.L. Atkinson J.E. Earl D.M. Mushet D.E. Scott S.L. Lance S.A. Johnson 《Journal of the American Water Resources Association》2019,55(2):334-353
Many species that inhabit seasonally ponded wetlands also rely on surrounding upland habitats and nearby aquatic ecosystems for resources to support life stages and to maintain viable populations. Understanding biological connectivity among these habitats is critical to ensure that landscapes are protected at appropriate scales to conserve species and ecosystem function. Biological connectivity occurs across a range of spatial and temporal scales. For example, at annual time scales many organisms move between seasonal wetlands and adjacent terrestrial habitats as they undergo life‐stage transitions; at generational time scales, individuals may disperse among nearby wetlands; and at multigenerational scales, there can be gene flow across large portions of a species’ range. The scale of biological connectivity may also vary among species. Larger bodied or more vagile species can connect a matrix of seasonally ponded wetlands, streams, lakes, and surrounding terrestrial habitats on a seasonal or annual basis. Measuring biological connectivity at different spatial and temporal scales remains a challenge. Here we review environmental and biological factors that drive biological connectivity, discuss implications of biological connectivity for animal populations and ecosystem processes, and provide examples illustrating the range of spatial and temporal scales across which biological connectivity occurs in seasonal wetlands. 相似文献
213.
Jyoti Yadav Dinesh Yadav Rajat Vashistha D. P. Goyal 《International Journal of Green Energy》2019,16(3):242-255
In this work, an attempt has been made to harvest green energy from piezoelectric material using fluid flow in a conduit. Piezoelectric Energy Harvesting using Fluid Flow (PEHF) experimental model has been designed and the outputs obtained are compared with results obtained from simulations using ANSYS (computational fluid dynamics) and also with the mathematical modeling. The PEHF model has been utilized to analyze the effect of flow rate of water with reference to energy extracted. The full wave bridge rectifier and voltage doubler circuits have been used to obtain the direct current (DC) from the PEHF model. It is observed that the output obtained using experiments holds good in agreement with the results retrieved through simulations and mathematical results. The increase in flow rate of fluid leads to initially increase and then decrease in output of PEHF model as the maximum energy generated when flow rates (external force) matches with the frequency of excitation of the systems, i.e., at its resonance. The maximum energy output is generated at its resonance frequencies. It is observed that the full wave bridge rectifier circuit gives greater output as compared to a voltage doubler circuit. 相似文献
214.
The strategy of smoke control is of high importance for the design process of tunnels, especially for long and large cross-section tunnels. The South Hongmei Rd. Tunnel (SHT) located in Shanghai, China, is a 3.39 km long shield TBM (tunnel boring machine) tunnel with an external diameter of 14.5 m. The point smoke extraction system was proposed initially as the main ventilation strategy during a tunnel fire. To investigate the fire characteristics in the tunnel and develop appropriate smoke control strategies, a series of numerical 3D Computation Fluid Dynamics (CFD) simulations were conducted. Three fire scenarios, namely 5 MW, 20 MW and 50 MW, were modeled to evaluate the point extraction system. The gas temperatures, the stratification of the smoke, air temperature, minimum visibility etc., during the smoke spreading of a fire were analyzed. Based on the results of the simulation, the smoke extraction strategies according to fire scale and fire location were proposed for fire extinguishing. It was found that the three-point extraction opening strategy can control the smoke better than two-point extraction opening strategy under various fire scales, especially under serious fire scenario. From the results, damper openings ranged at closer intervals were found more efficient in two-point extraction system. Besides, placing the damper openings in the longitudinal direction can improve the efficiency of smoke extraction. It also results in reduction of the quantity of prefabricated members of duct slab and the process of assembly will be simplified during the construction. 相似文献
215.
黄河下游垦利站溶解N2O浓度和通量的季节变化及其调控因子分析 总被引:1,自引:0,他引:1
于2012年3月至2014年3月每月在黄河下游垦利站采集表层河水,测定其溶解氧化亚氮(N_2O)浓度并估算了其水-气交换通量,并于2012年10月至2013年12月每月对表层河水和沉积物进行了受控培养实验以认识其产生过程.结果表明:黄河下游表层河水中溶解N_2O浓度范围为11.63~27.23 nmol·L~(-1),平均值为(16.29±4.23)nmol·L~(-1).N_2O浓度呈现出较为明显的季节变化,具体表现为冬季和春季高于夏季和秋季,但全年变化幅度不大.溶解N_2O浓度主要受到温度、黄河径流量和溶解无机氮等因素的影响.N_2O饱和度范围为101.1%~343.0%,平均值为190.8%±72.3%,黄河下游N_2O全年处于过饱和状态,是大气N_2O的净源.利用LM86、W92和RC01公式估算出其平均水-气交换通量分别为(10.2±12.3)、(17.3±18.8)、(25.8±26.6)μmol·m-2·d~(-1).初步估算了2012—2013年黄河向河口及其邻近海域输入N_2O的量约为5.8×105mol·a~(-1).培养实验表明:水体和沉积物整体表现为净产生N_2O,其中潜在反硝化速率均明显高于硝化速率,反硝化作用在黄河N_2O的产生过程中有重要作用.水体中的潜在反硝化速率(以N计)的变化范围为(0.18~332.20)nmol·L~(-1)·h~(-1),平均值为(52.74±95.63)nmol·L~(-1)·h~(-1),沉积物中潜在反硝化速率的变化范围为0.37~187.60 nmol·kg~(-1)·h~(-1),平均值为(29.61±56.91)nmol·kg~(-1)·h~(-1). 相似文献
216.
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218.
经过两年的试验,研究了福田红树林中底栖大型动物群落的季节变化特征以及生活污水的排灌对其造成的可能影响。结果表明,红树区底栖大型动物群落总平均生物量的季节变化是不显著的(P>0.05)。总平均栖息密度明显地在1月和7月出现两个高峰,总体和软体动物的栖息密度出现显著的季节变化(P<0.01)。红树林断面经60m3/周的生活污水处理16个月,与对照断面相比,排污对底栖动物群落总的及其组成成份生物量和栖息密度的季节变化未造成显著影响(P>0.05)。但在排放污水断面的前端出现了一些污水性生物种类。 相似文献
219.
在静置换水条件下,研究了低pH值对大型存活、生长和生殖的影响。结果表明,在25±1℃下,急性试验低pH值对大型的24h和48hLL50值及其95%可信限分别为pH值4.66±0.19和4.94±0.20。慢性试验进行了14天,对存活和生长,pH值1.75有影响,pH值5.0没有影响;对生殖,pH值5.0有影响,pH值5.5没有影响。显示出低pH值对大型的毒性阈限在pH值5.00-5.50之间。 相似文献
220.
草原沙化和人工固沙草地生态演替中昆虫群落多样性变化的数值分析 总被引:2,自引:0,他引:2
对宁夏沙坡头自然保护区不同沙化和人工固沙草地地段昆虫和植物群落特征参数、环境因子进行了调查.按不同营养层类群、栖息型类群和重要目分别进行了昆虫多样性变化规律的研究,应用主分量分析法和相关分析法,分析了草原沙化和人工固沙草地生态演替中昆虫不同类群多样性间以及多样性变化与植物、环境因子的关系.结果表明,昆虫多样性随草地沙化的加重而降低,以直翅目、膜翅目和食叶类群的下降率最大;随草地的恢复昆虫多样性趋于增加,以鳞翅目、同翅目、半翅目、脉翅目及捕食类群增长率为大.寄生类群和捕食类群多样性取决于植食类群多样性;杂食类群与地栖性类群成显著性相关.影响昆虫多样性变化的主要环境因子为植物种类、层次结构、盖度和表土层厚度、坚硬度等. 相似文献