By coupling the three-dimensional hydrodynamic model with the wave model, numerical simulations of the three- dimensional wave-induced current are carried out in this study. The wave model is based on the numerical so...By coupling the three-dimensional hydrodynamic model with the wave model, numerical simulations of the three- dimensional wave-induced current are carried out in this study. The wave model is based on the numerical solution of the modified wave action equation and eikonal equation, which can describe the wave refraction and diffraction. The hydrodynamic model is driven by the wave-induced radiation stresses and affected by the wave turbulence. The numerical implementation of the module has used the finite-volume schemes on unstructured grid, which provides great flexibility for modeling the waves and currents in the complex actual nearshore, and ensures the conservation of energy propagation. The applicability of the proposed model is evaluated in calculating the cases of wave set-up, longshore currents, undertow on a sloping beach, rip currents and meandering longshore currents on a tri-cuspate beach. The results indicate that it is necessary to introduce the depth-dependent radiation stresses into the numerical simulation of wave-induced currents, and comparisons show that the present model makes better prediction on the wave procedure as well as both horizontal and vertical structures in the wave-induced current field.展开更多
为定量分析植物冠层结构与光分布及光合作用之间的关系,模拟实际环境中植物冠层的实时光合速率,为诸如作物模型中产量估测提供一种植物冠层尺度光合生产力计算方法,本文构建了基于L-系统的3D虚拟植物冠层光合作用模拟模型。模型主要分为...为定量分析植物冠层结构与光分布及光合作用之间的关系,模拟实际环境中植物冠层的实时光合速率,为诸如作物模型中产量估测提供一种植物冠层尺度光合生产力计算方法,本文构建了基于L-系统的3D虚拟植物冠层光合作用模拟模型。模型主要分为3部分:基于L-迭代文法系统与三维图形绘制技术构建3D虚拟植物冠层结构,利用正向光线跟踪及天空可见率算法模拟虚拟冠层内光辐射(Photosynthetically active radiation,PAR)传输,基于太阳几何参数、大气影响参数及地理位置等参数计算真实环境中虚拟冠层顶部实时PAR强度。利用此模型,直接输入或插值处理光合环境因子数值,采用单叶光合作用模型和相关呼吸作用模型,可计算冠层内净光合作用速率并进行周期内植物体生物量的积累估算。以实测的幼龄杉木为模拟对象,计算其冠层内净光合作用速率及周期内生物量积累,模拟结果表明,基于虚拟冠层的PAR分布模拟及其冠层光合作用速率计算,是一种对植株光合生产力估算的有效方法。展开更多
基金financially supported by the the National Natural Science Foundation of China(Grant No.51709054)the Public Science and Technology Research Funds Projects of Ocean(Grant Nos.201405025 and 201505019)
文摘By coupling the three-dimensional hydrodynamic model with the wave model, numerical simulations of the three- dimensional wave-induced current are carried out in this study. The wave model is based on the numerical solution of the modified wave action equation and eikonal equation, which can describe the wave refraction and diffraction. The hydrodynamic model is driven by the wave-induced radiation stresses and affected by the wave turbulence. The numerical implementation of the module has used the finite-volume schemes on unstructured grid, which provides great flexibility for modeling the waves and currents in the complex actual nearshore, and ensures the conservation of energy propagation. The applicability of the proposed model is evaluated in calculating the cases of wave set-up, longshore currents, undertow on a sloping beach, rip currents and meandering longshore currents on a tri-cuspate beach. The results indicate that it is necessary to introduce the depth-dependent radiation stresses into the numerical simulation of wave-induced currents, and comparisons show that the present model makes better prediction on the wave procedure as well as both horizontal and vertical structures in the wave-induced current field.
文摘为定量分析植物冠层结构与光分布及光合作用之间的关系,模拟实际环境中植物冠层的实时光合速率,为诸如作物模型中产量估测提供一种植物冠层尺度光合生产力计算方法,本文构建了基于L-系统的3D虚拟植物冠层光合作用模拟模型。模型主要分为3部分:基于L-迭代文法系统与三维图形绘制技术构建3D虚拟植物冠层结构,利用正向光线跟踪及天空可见率算法模拟虚拟冠层内光辐射(Photosynthetically active radiation,PAR)传输,基于太阳几何参数、大气影响参数及地理位置等参数计算真实环境中虚拟冠层顶部实时PAR强度。利用此模型,直接输入或插值处理光合环境因子数值,采用单叶光合作用模型和相关呼吸作用模型,可计算冠层内净光合作用速率并进行周期内植物体生物量的积累估算。以实测的幼龄杉木为模拟对象,计算其冠层内净光合作用速率及周期内生物量积累,模拟结果表明,基于虚拟冠层的PAR分布模拟及其冠层光合作用速率计算,是一种对植株光合生产力估算的有效方法。