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    • 2. 发明授权
    • Fuel vapor storage canister, fuel vapor adsorbent for canister, and method of producing fuel vapor adsorbent
    • 燃料蒸汽储存罐,罐用燃料蒸汽吸附剂和生产燃料蒸气吸附剂的方法
    • US08443786B2
    • 2013-05-21
    • US12964983
    • 2010-12-10
    • Koji Yamasaki
    • Koji Yamasaki
    • F02M33/02
    • F02M25/0854
    • A fuel vapor storage canister for adsorbing fuel vapor evaporated from a fuel tank of an automotive vehicle. The fuel vapor storage canister includes a casing provided with charge and purge ports at its first end and an atmospheric port at its second end. At least first and second fuel vapor adsorbent layers are respectively located near the first and second ends of the casing. In this arrangement, the first fuel vapor adsorbent layer is larger in cross-sectional area perpendicular to flow direction of fuel vapor than the second fuel vapor adsorbent layer. The first and second fuel vapor adsorbent layers respectively include first and second granular fuel vapor adsorbents. The first granular fuel vapor adsorbent has a microporous structure, while the second granular fuel vapor adsorbent has a macroporous structure.
    • 一种用于吸附从汽车的燃料箱蒸发的燃料蒸汽的燃料蒸汽储存罐。 燃料蒸汽存储罐包括在其第一端处设有充电和吹扫端口的壳体,其第二端处具有大气端口。 至少第一和第二燃料蒸汽吸附剂层分别位于壳体的第一和第二端附近。 在这种布置中,与第二燃料蒸汽吸附剂层相比,第一燃料蒸气吸附剂层的垂直于燃料蒸汽的流动方向的横截面面积更大。 第一和第二燃料蒸气吸附剂层分别包括第一和第二粒状燃料蒸气吸附剂。 第一粒状燃料蒸气吸附剂具有微孔结构,而第二粒状燃料蒸气吸附剂具有大孔结构。
    • 7. 发明申请
    • STORAGE APPARATUS AND METHOD FOR CONTROLLING STORAGE APPARATUS
    • 存储设备和控制存储设备的方法
    • US20140122818A1
    • 2014-05-01
    • US13697830
    • 2012-10-31
    • Mitsuo HayasakaKoji Yamasaki
    • Mitsuo HayasakaKoji Yamasaki
    • G06F3/06
    • G06F3/0608G06F3/0619G06F3/0641G06F3/065G06F3/067G06F17/30156
    • Upon receipt of an I/O request instructing storage of data in a storage device 106 from a host apparatus, a storage apparatus 100 selects a de-duplication process method to be applied to the received data, based on at least any of influence on processing performance of the storage apparatus 100 to be performed by execution of a first de-duplication process method (inline method) in which the de-duplication process is performed on the data immediately after the receipt of the I/O request, influence on the processing performance of the storage apparatus 100 to be performed by execution of a second de-duplication process method (post-process method) in which the de-duplication process is performed on the data at later timing, and the size of a temporary storage device 106b to be required for the processing of the data by the second de-duplication process method.
    • 在从主机装置接收到指示存储装置106中的数据存储的I / O请求时,存储装置100基于对处理的影响中的至少任一个选择对应用于所接收的数据的重复数据删除处理方法 通过执行对接收到I / O请求之后的数据进行重复数据删除处理的第一重复数据删除处理方法(内联方法)来执行存储装置100的性能,对处理 通过执行对稍后定时的数据进行重复数据删除处理的第二重复数据删除处理方法(后处理方法)以及临时存储装置106b的大小来执行存储装置100的性能 是通过第二重复数据删除处理方法处理数据所需要的。
    • 10. 发明申请
    • FUEL VAPOR STORAGE CANISTER, FUEL VAPOR ADSORBENT FOR CANISTER, AND METHOD OF PRODUCING FUEL VAPOR ADSORBENT
    • 燃料蒸气储存器,用于罐头的燃料蒸气吸附器和生产燃料蒸气吸附剂的方法
    • US20110077150A1
    • 2011-03-31
    • US12965011
    • 2010-12-10
    • Koji YAMASAKI
    • Koji YAMASAKI
    • B01J20/20
    • F02M25/0854
    • A fuel vapor storage canister for adsorbing fuel vapor evaporated from a fuel tank of an automotive vehicle. The fuel vapor storage canister includes a casing provided with charge and purge ports at its first end and an atmospheric port at its second end. At least first and second fuel vapor adsorbent layers are respectively located near the first and second ends of the casing. In this arrangement, the first fuel vapor adsorbent layer is larger in cross-sectional area perpendicular to flow direction of fuel vapor than the second fuel vapor adsorbent layer. The first and second fuel vapor adsorbent layers respectively include first and second granular fuel vapor adsorbents. The first granular fuel vapor adsorbent has a microporous structure, while the second granular fuel vapor adsorbent has a macroporous structure.
    • 一种用于吸附从汽车的燃料箱蒸发的燃料蒸汽的燃料蒸汽储存罐。 燃料蒸汽存储罐包括在其第一端处设有充电和吹扫端口的壳体,其第二端处具有大气端口。 至少第一和第二燃料蒸汽吸附剂层分别位于壳体的第一和第二端附近。 在这种布置中,与第二燃料蒸汽吸附剂层相比,第一燃料蒸气吸附剂层的垂直于燃料蒸汽的流动方向的横截面面积更大。 第一和第二燃料蒸气吸附剂层分别包括第一和第二粒状燃料蒸气吸附剂。 第一粒状燃料蒸气吸附剂具有微孔结构,而第二粒状燃料蒸气吸附剂具有大孔结构。