在分析研究国内外海洋底水原位探测技术的前提下,详细阐述了自主研发的"海水溶解气甲烷原位探测技术成果"的研发思路、关键技术和与国外技术的区别;结合该技术在我国南海北部水合物赋存区获得海洋底水原位甲烷测试数据以及现...在分析研究国内外海洋底水原位探测技术的前提下,详细阐述了自主研发的"海水溶解气甲烷原位探测技术成果"的研发思路、关键技术和与国外技术的区别;结合该技术在我国南海北部水合物赋存区获得海洋底水原位甲烷测试数据以及现有分层海水技术在南海北部表层海水和台西南盆地底层海水中甲烷测试数据,进行了水合物勘探中分层海水甲烷指标地球化学特征和不同海水测量方法技术在天然气水合物勘探中指示作用的研究和评价,旨在为天然气水合物中海水地球化学勘探方法的选择和发展方向提供参考依据。结果表明:(1)表层海水溶解气甲烷异常在区域水合物远景区中具有10~50nmol·L^(-1)的绝对甲烷浓度和面积较大(上千km^2)的区域地球化学特征;(2)底层海水甲烷异常背景值一般具有100nmol·L^(-1)以上的绝对甲烷浓度和面积较确定的局部地球化学异常特征;(3)海洋底水原位甲烷地球化学异常数据在水合物赋存区上的异常具有300~800nmol·L^(-1)的绝对甲烷浓度并具有高衬度异常特征。勘探技术成果显示:(1)常规技术和CTD技术获取的表层海水异常能够筛选水合物勘探远景区;(2)底水原位技术和台湾的岩心钻探技术(core top water)获取的底水地球化学异常与地下烃类聚集体渗漏相关,并有以生物成因气为主的同位素特征,因此该异常能够显示与水合物相关的甲烷渗漏地,为水合物赋存区段的识别提供依据。海水原位地球化学勘探技术在水合物海水地球化学勘探中具有广阔的应用前景。展开更多
The state-of-the-art OpenFOAM technology is used to develop a numerical model that can be devoted to numerically investigating wake-collapse internal waves generated by a submerged moving body.The model incorporates b...The state-of-the-art OpenFOAM technology is used to develop a numerical model that can be devoted to numerically investigating wake-collapse internal waves generated by a submerged moving body.The model incorporates body geometry,propeller forcing,and stratification magnitude of seawater.The generation mechanism and wave properties are discussed based on model results.It was found that the generation of the wave and its properties depend greatly on the body speed.Only when that speed exceeds some critical value,between 1.5 and 4.5 m/s,can the moving body generate wake-collapse internal waves,and with increases of this speed,the time of generation advances and wave amplitude increases.The generated wake-collapse internal waves are confirmed to have characteristics of the second baroclinic mode.As the body speed increases,wave amplitude and length increase and its waveform tends to take on a regular sinusoidal shape.For three linearly temperature-stratified profiles examined,the weaker the stratification,the stronger the wake-collapse internal wave.展开更多
文摘在分析研究国内外海洋底水原位探测技术的前提下,详细阐述了自主研发的"海水溶解气甲烷原位探测技术成果"的研发思路、关键技术和与国外技术的区别;结合该技术在我国南海北部水合物赋存区获得海洋底水原位甲烷测试数据以及现有分层海水技术在南海北部表层海水和台西南盆地底层海水中甲烷测试数据,进行了水合物勘探中分层海水甲烷指标地球化学特征和不同海水测量方法技术在天然气水合物勘探中指示作用的研究和评价,旨在为天然气水合物中海水地球化学勘探方法的选择和发展方向提供参考依据。结果表明:(1)表层海水溶解气甲烷异常在区域水合物远景区中具有10~50nmol·L^(-1)的绝对甲烷浓度和面积较大(上千km^2)的区域地球化学特征;(2)底层海水甲烷异常背景值一般具有100nmol·L^(-1)以上的绝对甲烷浓度和面积较确定的局部地球化学异常特征;(3)海洋底水原位甲烷地球化学异常数据在水合物赋存区上的异常具有300~800nmol·L^(-1)的绝对甲烷浓度并具有高衬度异常特征。勘探技术成果显示:(1)常规技术和CTD技术获取的表层海水异常能够筛选水合物勘探远景区;(2)底水原位技术和台湾的岩心钻探技术(core top water)获取的底水地球化学异常与地下烃类聚集体渗漏相关,并有以生物成因气为主的同位素特征,因此该异常能够显示与水合物相关的甲烷渗漏地,为水合物赋存区段的识别提供依据。海水原位地球化学勘探技术在水合物海水地球化学勘探中具有广阔的应用前景。
基金Supported by the State Key Program of National Natural Science of China(No.60638020)
文摘The state-of-the-art OpenFOAM technology is used to develop a numerical model that can be devoted to numerically investigating wake-collapse internal waves generated by a submerged moving body.The model incorporates body geometry,propeller forcing,and stratification magnitude of seawater.The generation mechanism and wave properties are discussed based on model results.It was found that the generation of the wave and its properties depend greatly on the body speed.Only when that speed exceeds some critical value,between 1.5 and 4.5 m/s,can the moving body generate wake-collapse internal waves,and with increases of this speed,the time of generation advances and wave amplitude increases.The generated wake-collapse internal waves are confirmed to have characteristics of the second baroclinic mode.As the body speed increases,wave amplitude and length increase and its waveform tends to take on a regular sinusoidal shape.For three linearly temperature-stratified profiles examined,the weaker the stratification,the stronger the wake-collapse internal wave.