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    • 1. 发明申请
    • DATA ACQUISITION AND PROCESSING FOR INVASION PROFILE AND GAS ZONE ANALYSIS WITH NMR DUAL OR MULTIPLE INTERECHO SPACING TIME LOGS
    • 数据采集​​和处理入侵轮廓和气体分析与NMR双或多个INTERECHO间隔时间日志
    • US20100088033A1
    • 2010-04-08
    • US12245121
    • 2008-10-03
    • Songhua ChenWei Shao
    • Songhua ChenWei Shao
    • G01V3/08G01V3/26G06F19/00
    • G01V3/32G01N24/081G01R33/50
    • A method for obtaining a parameter of interest related to an earth formation, the method including: obtaining nuclear magnetic resonance (NMR) data from an NMR tool investigating the earth formation with a plurality of pulse sequences of radio frequency energy, each pulse sequence having a unique frequency, a first train of pulses having a first interecho time (TE1) and a second train of pulses having a second interecho time (TE2) different from the first interecho time; relating the NMR data to a partial porosity at points to establish an NMR response model; solving the NMR response model to calculate the partial porosity at each of the points in the earth formation; summing the partial porosity for each of the points corresponding to each depth of investigation to provide a pore volume; and associating each pore volume with the corresponding depth of investigation to provide the parameter of interest.
    • 一种用于获得与地球相关的感兴趣参数的方法,所述方法包括:利用多个射频能量的脉冲序列从研究地层的NMR工具获得核磁共振(NMR)数据,每个脉冲序列具有 唯一频率,具有第一相互作用时间(TE1)和第二脉冲序列的第一脉冲序列具有不同于第一相互间隔时间的第二相互作用时间(TE2); 将NMR数据与点处的部分孔隙度相关联,以建立NMR响应模型; 解决NMR响应模型,计算地层中每个点的部分孔隙度; 将与每个调查深度相对应的每个点的部分孔隙率相加以提供孔体积; 并将每个孔体积与相应的调查深度相关联以提供感兴趣的参数。
    • 2. 发明授权
    • Data acquisition and processing for invasion profile and gas zone analysis with NMR dual or multiple interecho spacing time logs
    • 采用核磁共振双重或多次间隔时间对数据进行数据采集和处理
    • US08131469B2
    • 2012-03-06
    • US12245121
    • 2008-10-03
    • Songhua ChenWei Shao
    • Songhua ChenWei Shao
    • G01V1/40
    • G01V3/32G01N24/081G01R33/50
    • A method for obtaining a parameter of interest related to an earth formation, the method including: obtaining nuclear magnetic resonance (NMR) data from an NMR tool investigating the earth formation with a plurality of pulse sequences of radio frequency energy, each pulse sequence having a unique frequency, a first train of pulses having a first interecho time (TE1) and a second train of pulses having a second interecho time (TE2) different from the first interecho time; relating the NMR data to a partial porosity at points to establish an NMR response model; solving the NMR response model to calculate the partial porosity at each of the points in the earth formation; summing the partial porosity for each of the points corresponding to each depth of investigation to provide a pore volume; and associating each pore volume with the corresponding depth of investigation to provide the parameter of interest.
    • 一种用于获得与地球相关的感兴趣参数的方法,所述方法包括:利用多个射频能量的脉冲序列从研究地层的NMR工具获得核磁共振(NMR)数据,每个脉冲序列具有 唯一频率,具有第一相互作用时间(TE1)和第二脉冲序列的第一脉冲序列具有不同于第一相互间隔时间的第二相互作用时间(TE2); 将NMR数据与点处的部分孔隙度相关联,以建立NMR响应模型; 解决NMR响应模型,计算地层中每个点的部分孔隙度; 将与每个调查深度相对应的每个点的部分孔隙率相加以提供孔体积; 并将每个孔体积与相应的调查深度相关联以提供感兴趣的参数。
    • 5. 发明授权
    • Firmware recovery system and method
    • 固件恢复系统和方法
    • US08458524B2
    • 2013-06-04
    • US12982886
    • 2010-12-31
    • Wei ShaoLe Zhang
    • Wei ShaoLe Zhang
    • G06F11/00
    • G06F11/1417G06F11/1666G06F11/20
    • A firmware recovery system includes a baseboard management controller (BMC) module, a south bridge, a basic input and output system (BIOS) module, a multiplexer and a storage module. The BIOS module is connected to the BMC module by the south bridge and determines whether a firmware file of the BMC module is corrupt. The multiplexer selectively connects the BIOS module or the BMC module to the south bridge. The storage module stores a new firmware file. When the firmware file of the BMC module is corrupt, the BIOS module controls the multiplexer to select the BMC module to connect to the south bridge. The BIOS module reads the new firmware file from the storage module to recover the corrupt firmware file from the BMC module.
    • 固件恢复系统包括基板管理控制器(BMC)模块,南桥,基本输入和输出系统(BIOS)模块,多路复用器和存储模块。 BIOS模块通过南桥连接到BMC模块,并确定BMC模块的固件文件是否损坏。 复用器选择性地将BIOS模块或BMC模块连接到南桥。 存储模块存储新的固件文件。 当BMC模块的固件文件损坏时,BIOS模块控制多路复用器选择BMC模块连接到南桥。 BIOS模块从存储模块读取新的固件文件,以从BMC模块中恢复损坏的固件文件。