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    • 2. 发明申请
    • SYSTEM AND METHOD FOR SUPPORTING AUTOMATICALLY DEPLOYING/UNDEPLOYING APPLICATION COMPONENTS IN A TRANSACTIONAL MIDDLEWARE MACHINE ENVIRONMENT
    • 支持自动部署/发布应用程序组件的系统和方法在交互式中间件机器环境中
    • US20130086576A1
    • 2013-04-04
    • US13423035
    • 2012-03-16
    • Zhenyu LiLidan Liu
    • Zhenyu LiLidan Liu
    • G06F9/445
    • H04L47/70G06F8/60G06F9/5072G06F2209/508
    • A system and method can support automatically deploying application components in a transactional middleware machine environment. A deployment center can receive one or more application packages, each of which contains binary files for one or more transactional servers and configuration information that describes relationship and parameters of the one or more transactional servers in the application package. The deployment center can further generate one or more distribution packages for each transactional middleware machine in the transactional middleware machine environment based on the one or more application packages. Then, the deployment center can deploy the one or more distribution packages to the plurality of transactional middleware machines in the transactional middleware machine environment.
    • 系统和方法可以支持在事务中间件机器环境中自动部署应用程序组件。 部署中心可以接收一个或多个应用程序包,每个应用程序包都包含一个或多个事务性服务器的二进制文件以及描述应用程序包中一个或多个事务性服务器的关系和参数的配置信息。 基于一个或多个应用程序包,部署中心可以进一步为交易中间件机器环境中的每个事务性中间件机器生成一个或多个分发程序包。 然后,部署中心可以将一个或多个分发包部署到事务中间件机器环境中的多个事务中间件机器。
    • 3. 发明申请
    • Fuel Injector with Damper Volume and Method for Controlling Pressure Overshoot
    • 具有减震器体积的燃油喷射器和用于控制压力过冲的方法
    • US20120043393A1
    • 2012-02-23
    • US12857765
    • 2010-08-17
    • Zhenyu LiAlan Stockner
    • Zhenyu LiAlan Stockner
    • F02M63/00
    • F02M63/0275F02M55/025F02M61/10F02M61/20F02M2200/31F02M2200/40
    • A fuel injector configured to inject a predetermined volume of fuel, such as heavy fuel oil, is disclosed. The disclosed injector includes an injector body that defines a fuel inlet, a fuel passageway, and an orifice. The injector also includes a needle disclosed at least partially within the injector body. The needle is movable between a closed position where the needle blocks the orifice and an open position where the needle at least partially unblocks the orifice. At least the injector body and the needle define a nozzle chamber. The nozzle chamber is in communication with a high pressure fuel passageway and the orifice. The fuel passageway and nozzle chamber have a combined volume greater than the predetermined injection volume. The combined volume of the nozzle chamber and fuel passageway act as a damper to alleviate the effects of pressure overshoot, pressure oscillations and water hammer
    • 公开了一种配置成喷射预定体积的燃料(例如重质燃料油)的燃料喷射器。 所公开的喷射器包括限定燃料入口,燃料通道和孔口的喷射器主体。 喷射器还包括至少部分地在喷射器主体内公开的针。 针可以在针塞住孔口的关闭位置和针至少部分地解除孔口的打开位置之间移动。 至少喷射器主体和针限定喷嘴室。 喷嘴室与高压燃料通道和孔口连通。 燃料通道和喷嘴室具有大于预定喷射体积的组合体积。 喷嘴室和燃料通道的组合体积用作减震器,以减轻压力过冲,压力振荡和水锤的影响
    • 5. 发明授权
    • Mechanically tunable elastomeric optofluidic distributed feedback dye lasers
    • 机械可调谐弹性光流分布反馈染料激光器
    • US07817698B2
    • 2010-10-19
    • US11836578
    • 2007-08-09
    • Zhenyu LiDemetri PsaltisAxel SchererZhaoyu Zhang
    • Zhenyu LiDemetri PsaltisAxel SchererZhaoyu Zhang
    • H01S3/20
    • H01S3/022H01S3/08036H01S3/1053H01S3/1055H01S3/213
    • The invention relates to a microfluidic dye laser including a pump light source configured to provide light having a pump light wavelength. The microfluidic dye laser also includes an elastomer substantially optically transparent at the pump light wavelength and at a microfluidic dye laser wavelength. A microfluidic channel configured to accept a fluidic dye is defined in the elastomer. An optical grating is formed in a single mode 3D waveguide in the microfluidic channel in order to provide a single mode microfluidic dye laser light as output in response to illumination with light from the pump light source. In another aspect, the invention features a method of tuning a wavelength of a microfluidic dye laser light by mechanically deforming the elastomeric laser chip to change the grating period in the optical cavity.
    • 本发明涉及一种微流体染料激光器,其包括被配置为提供具有泵浦光波长的光的泵浦光源。 微流体染料激光器还包括在泵浦光波长处和微流体染料激光波长基本上光学透明的弹性体。 在弹性体中限定了构造成接受流体染料的微流体通道。 在微流体通道中的单模3D波导中形成光栅,以便响应于来自泵浦光源的光的照明,提供单模微流体染料激光作为输出。 在另一方面,本发明的特征在于通过机械地使弹性体激光芯片变形以改变光腔中的光栅周期来调谐微流体染料激光的波长的方法。
    • 6. 发明申请
    • MECHANICALLY TUNABLE ELASTOMERIC OPTOFLUIDIC DISTRIBUTED FEEDBACK DYE LASERS
    • 机械柔性弹性光滑分布式反馈染料激光
    • US20080159351A1
    • 2008-07-03
    • US11836578
    • 2007-08-09
    • Zhenyu LiDemetri PsaltisAxel SchererZhaoyu Zhang
    • Zhenyu LiDemetri PsaltisAxel SchererZhaoyu Zhang
    • H01S3/20H01S3/10
    • H01S3/022H01S3/08036H01S3/1053H01S3/1055H01S3/213
    • The invention relates to a microfluidic dye laser including a pump light source configured to provide light having a pump light wavelength. The microfluidic dye laser also includes an elastomer substantially optically transparent at the pump light wavelength and at a microfluidic dye laser wavelength. A microfluidic channel configured to accept a fluidic dye is defined in the elastomer. An optical grating is formed in a single mode 3D waveguide in the microfluidic channel in order to provide a single mode microfluidic dye laser light as output in response to illumination with light from the pump light source. In another aspect, the invention features a method of tuning a wavelength of a microfluidic dye laser light by mechanically deforming the elastomeric laser chip to change the grating period in the optical cavity.
    • 本发明涉及一种微流体染料激光器,其包括被配置为提供具有泵浦光波长的光的泵浦光源。 微流体染料激光器还包括在泵浦光波长处和微流体染料激光波长基本上光学透明的弹性体。 在弹性体中限定了构造成接受流体染料的微流体通道。 在微流体通道中的单模3D波导中形成光栅,以便响应于来自泵浦光源的光的照明,提供单模微流体染料激光作为输出。 在另一方面,本发明的特征在于通过机械地使弹性体激光芯片变形以改变光腔中的光栅周期来调谐微流体染料激光的波长的方法。
    • 8. 发明申请
    • Method of Gap Closing in Nucleotide Sequence and Apparatus Thereof
    • US20140350866A1
    • 2014-11-27
    • US14361158
    • 2011-11-29
    • Binghang LiuZhenyu LiYanxiang ChenYingrui LiJian WangJun WangHuanming Yang
    • Binghang LiuZhenyu LiYanxiang ChenYingrui LiJian WangJun WangHuanming Yang
    • G06F19/16
    • G16B15/00C12Q1/6869G16B30/00C12Q2537/165
    • Provided is a method of gap closing in nucleotide sequence. The nucleic acid sequence comprises a first contig at one end of a gap in an unassembled region, and a second contig at the other end of the gap in the unassembled region. The method comprises: selecting reads having an overlap with one end of the first contig close to the gap as a set of reads for gap closing; selecting reads having a shortest overlap with the first contig in the set of reads for gap closing as a candidate read; determining whether reads having an overlapping length with the first contig shorter than an overlapping length between the candidate read and the first contig present in the set of reads for gap closing, and determining whether reads having no overlapping relationship with the candidate read present in the set of reads for gap closing; obtaining a result of presenting an extension conflict, and determining an unconfident candidate read, if reads having an overlapping length with the first contig shorter than an overlapping length between the candidate read and the first contig present in the set of reads for gap closing, reads having no overlapping relationship with the candidate read present in the set of reads for gap closing, or both reads having an overlapping length with the first contig shorter than an overlapping length between the candidate read and the first contig, and reads having no overlapping relationship with the candidate read present in the set of reads for gap closing; reselecting the candidate read until obtaining a confident candidate read, if the candidate read is unconfident; connecting the confident candidate read to the first contig, to form a new first contig; determining whether one end of the new first contig close to the gap has an overlap with one end of the second contig close to the gap; performing the step of selecting the set of reads for gap closing on the basis of the new first contig, if the one end of the new first contig close to the gap has no overlap with the one end of the second contig close to the gap, wherein the first contig in the step of selecting the set of reads for gap closing is replaced with the new first contig; connecting the new first contig to the second contig to complete gap closing, if one end of the new first contig close to the gap has an overlap with one end of the second contig close to the gap.