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    • 2. 发明授权
    • Nanostructured neutron sensitive materials for well logging applications
    • 用于测井应用的纳米结构化中子敏感材料
    • US09335436B2
    • 2016-05-10
    • US14026506
    • 2013-09-13
    • Mikhail KorjikAndrei FederovMaxim VasilyevAnton Nikitin
    • Mikhail KorjikAndrei FederovMaxim VasilyevAnton Nikitin
    • G01V5/08G01V5/10G01T3/06
    • G01V5/10G01T3/06G01V5/107Y10T29/49117
    • An apparatus for estimating a property of an earth formation includes: a neutron source disposed in a borehole; a neutron detector having a neutron detection material that includes a material transparent to light having a plurality of nano-crystallites where each nano-crystallite in the plurality has a periodic crystal structure with a diameter or dimension that is less than 1000 nm and includes atoms of a neutron interaction material that emit a charged particle upon absorbing a received neutron and atoms of an activator material that provide for scintillation upon interacting with the charged particle to emit light photons wherein the atoms of the neutron interaction material and the atoms of the activator material have positions in the periodic crystal structure of each nano-crystallite in the plurality; a photodetector that receives the photons and provides a signal correlated to the photons; and a processor to estimate the property using the signal.
    • 用于估计地球物性的装置包括:设置在钻孔中的中子源; 具有中子检测材料的中子检测器,其包括对具有多个纳米晶体的光透明的材料,其中每个纳米微晶中的每个纳米微晶具有直径或尺寸小于1000nm的周期性晶体结构,并且包括 中子相互作用材料,其在吸收接收的中子和激发剂材料的原子时发射带电粒子,其在与带电粒子相互作用时提供闪烁以发射光子,其中中子相互作用材料的原子和活化剂材料的原子具有 在多个纳米微晶的周期性晶体结构中的位置; 光电检测器,其接收光子并提供与光子相关的信号; 以及使用该信号来估计属性的处理器。
    • 4. 发明授权
    • Nanostructured glass ceramic neutron shield for down-hole thermal neutron porosity measurement tools
    • 用于井下热中子孔隙度测量工具的纳米结构玻璃陶瓷中子屏蔽
    • US09575207B1
    • 2017-02-21
    • US15062373
    • 2016-03-07
    • Maxim VasilyevValery KhabasheskuMikhail KorjikAndrei Fedorov
    • Maxim VasilyevValery KhabasheskuMikhail KorjikAndrei Fedorov
    • G01V5/10G01V5/06G21K1/06G21F1/06
    • G01V5/107C03C3/062C03C3/078C03C3/095C03C10/00G01V5/101G21F1/06
    • An apparatus for providing a signal indicative of a property of an earth formation includes: a carrier conveyable through a borehole; a neutron source disposed on the carrier and configured to emit neutrons into the earth formation; a radiation detector disposed on the carrier and configured to detect radiation from the earth formation due to interaction of emitted neutrons with the earth formation and to provide the signal indicative of the property; and a neutron shield configured to shield the radiation detector from emitted neutrons that did not interact with the earth formation; wherein the radiation detector shield includes a glass ceramic material having a plurality of nano-crystallites, each nano-crystallite in the plurality having a periodic crystal structure with a diameter or dimension that is less than 1000 nm that includes Li and/or Boron and a rare-earth element that have positions in the periodic crystal structure of each nano-crystallite.
    • 用于提供指示地球物理特性的信号的装置包括:可通过钻孔传送的载体; 中子源,设置在载体上并且构造成将中子发射到地层中; 放射线检测器,设置在所述载体上并且被配置为检测由于发射的中子与地球相互作用而产生的地球的辐射并且提供指示所述性质的信号; 以及中子屏蔽,被配置为屏蔽辐射探测器与未与地层相互作用的发射中子; 其中所述辐射检测器屏蔽包括具有多个纳米微晶的玻璃陶瓷材料,其中每个纳米微晶具有包括Li和/或硼的直径或尺寸小于1000nm的周期性晶体结构,和 在每个纳米微晶的周期性晶体结构中具有位置的稀土元素。
    • 5. 发明申请
    • NANOSTRUCTURED NEUTRON SENSITIVE MATERIALS FOR WELL LOGGING APPLICATIONS
    • 用于井下应用的纳米结构的中性敏感材料
    • US20150076336A1
    • 2015-03-19
    • US14026506
    • 2013-09-13
    • Mikhail KorjikAndrei FederovMaxim VasilyevAnton Nikitin
    • Mikhail KorjikAndrei FederovMaxim VasilyevAnton Nikitin
    • G01V5/10
    • G01V5/10G01T3/06G01V5/107Y10T29/49117
    • An apparatus for estimating a property of an earth formation includes: a neutron source disposed in a borehole; a neutron detector having a neutron detection material that includes a material transparent to light having a plurality of nano-crystallites where each nano-crystallite in the plurality has a periodic crystal structure with a diameter or dimension that is less than 1000 nm and includes atoms of a neutron interaction material that emit a charged particle upon absorbing a received neutron and atoms of an activator material that provide for scintillation upon interacting with the charged particle to emit light photons wherein the atoms of the neutron interaction material and the atoms of the activator material have positions in the periodic crystal structure of each nano-crystallite in the plurality; a photodetector that receives the photons and provides a signal correlated to the photons; and a processor to estimate the property using the signal.
    • 用于估计地球物性的装置包括:设置在钻孔中的中子源; 具有中子检测材料的中子检测器,其包括对具有多个纳米晶体的光透明的材料,其中每个纳米微晶中的每个纳米微晶具有直径或尺寸小于1000nm的周期性晶体结构,并且包括 中子相互作用材料,其在吸收接收的中子和激发剂材料的原子时发射带电粒子,其在与带电粒子相互作用时提供闪烁以发射光子,其中中子相互作用材料的原子和活化剂材料的原子具有 在多个纳米微晶的周期性晶体结构中的位置; 光电检测器,其接收光子并提供与光子相关的信号; 以及使用该信号来估计属性的处理器。
    • 6. 发明申请
    • COMPOSITE HIGH TEMPERATURE GAMMA RAY DETECTION MATERIAL FOR WELL LOGGING APPLICATIONS
    • 用于井下应用的复合高温伽马射线探伤材料
    • US20150076335A1
    • 2015-03-19
    • US14484581
    • 2014-09-12
    • Maxim VasilyevValery N. KhabasheskuAndrei FedorovMikhail Korjik
    • Maxim VasilyevValery N. KhabasheskuAndrei FedorovMikhail Korjik
    • G01V5/04E21B49/00
    • G01V5/04E21B49/00G01T1/202
    • An apparatus for detecting a gamma-ray includes: a gamma-ray detection material comprising a material transparent to light having a plurality of nano-crystallites where each nano-crystallite in the plurality has as periodic crystal structure with a diameter or dimension that is less than 1000 nm and includes (i) a heavy atom having an atomic number greater than or equal to 55 that emits an energetic electron upon interacting with an incoming gamma-ray and (ii) and an activator atom that provides for scintillation upon interacting with the energetic electron to emit light photons wherein the heavy atom and the activator atom have positions in the periodic crystal structure of each nano-crystallite in the plurality; and a photodetector optically coupled to the gamma-ray detection material and configured to detect the light photons emitted from the scintillation and to provide a signal correlated to the detected light photons.
    • 一种用于检测伽马射线的装置包括:伽马射线检测材料,包括具有多个纳米晶体的透光材料,其中每个纳米晶体中的每个纳米微晶具有周期性晶体结构,其直径或尺寸较小 超过1000nm,并且包括(i)原子序数大于或等于55的重原子,其在与进入的γ射线相互作用时发射能量电子,和(ii)和激活剂原子,其在与 高能电子发射光子,其中重原子和活化剂原子在多个纳米晶体的周期性晶体结构中具有位置; 以及光电耦合到伽马射线检测材料并被配置为检测从闪烁体发射的光子并且提供与检测到的光子相关的信号的光电探测器。