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    • 1. 发明申请
    • METHOD AND ARRANGEMENT FOR IMPROVING THE FIXING ARRANGEMENT OF A CHIPPER BLADE
    • 改进剃须刀刀片固定装置的方法和装置
    • WO2010063892A1
    • 2010-06-10
    • PCT/FI2009/050984
    • 2009-12-07
    • ANDRITZ OYKOKKO, PekkaJÄÄSKELÄINEN, Kari
    • KOKKO, PekkaJÄÄSKELÄINEN, Kari
    • B27L11/00
    • B27L11/005Y10T29/49826
    • The invention relates to a method of improving the fixing arrangement of a chipper (1) blade (6), said chipper (1) comprising an essentially cylindrical blade disc (5), one end surface (5b) of which is provided with one or more blades (6) extending essentially radially in relation to the blade disc (5) and for support thereof a wearing segment (9) is arranged, said chipper (1) being provided with a wearing surface (3) subsequent the blade for resisting the stress caused by the logs being chipped in the chipper. In the practice of the method, at least one blade segment (29) is arranged to be supported onto the blade (6) and the wearing segment (9), an upper surface (29b) of which forms a desired portion (3b) of the wearing surface (3), and a coating (10) is formed on the upper surface (29b) to resist said stress.
    • 本发明涉及一种改进切片机(1)叶片(6)的固定装置的方法,所述切片机(1)包括基本上圆柱形的叶片(5),其一个端面(5b)设置有一个或 更多的叶片(6)相对于叶片盘(5)基本上径向地延伸并且用于支撑它,设置有穿着段(9),所述切片机(1)设置有磨损表面(3),后面的刀片用于抵抗 由于原木在切屑机中磨损引起的应力。 在该方法的实践中,至少一个叶片段(29)被布置成支撑在叶片(6)和磨损段(9)上,其上表面(29b)形成所需部分(3b) 磨损面(3)和涂层(10)形成在上表面(29b)上以抵抗所述应力。
    • 2. 发明申请
    • METHOD AND SYSTEM FOR MONITORING WATERBOTTOM SUBSIDENCE
    • 监测水底栖息地的方法和系统
    • WO2010037726A2
    • 2010-04-08
    • PCT/EP2009/062572
    • 2009-09-29
    • SHELL INTERNATIONALE RESEARCH MAATSCHAPPIJ B.V.DEN BOER, Johannis JosephusFRANZEN, AndreJOINSON, DanielJÄÄSKELÄINEN, Kari-Mikko
    • DEN BOER, Johannis JosephusFRANZEN, AndreJOINSON, DanielJÄÄSKELÄINEN, Kari-Mikko
    • G01V11/00G01C5/04G01C5/06
    • G01V11/00G01C5/06
    • A system for monitoring subsidence and/or rising of a waterbottom (3), such as an ultradeep oceanfloor, has a string of pressure sensors (2) along the length of the interior (13) of a sealed pressure resistant protective tube (1) that rests on the waterbottom (3) and is filled with a low pressure liquid, such as water, so that any subsidence and/or rising of the waterbottom (3) can be deduced from subsidence and/or rising of a section of the tube (1) and associated variation of the fluid pressures measured by the pressure sensors due to variation of the hydrostatic fluid pressure of the low pressure liquid in the interior (13) of the tube (1). The tube (1) is equipped with a series of valves (10) which divide its interior (13) into a series of sealed segments during descent to protect the pressure sensors (2) against hydrostatic pressure of the liquid within the tube(l) during installation. The use of a pressure resistant tube (1) filled with a low pressure liquid allows the use of sensitive pressure sensors (2) which are able to monitor pressure variations of -0.001 Bar associated with a waterbottom subsidence of ~1 cm, at a waterdepth of >km where the ambient water pressure may be >100 Bar.
    • 用于监测诸如超深度海底的水底(3)的沉降和/或上升的系统具有沿着密封耐压保护管(1)的内部(13)的长度的一串压力传感器(2) 其位于水底(3)上,并且填充有诸如水的低压液体,使得可以从管的一部分的沉降和/或上升中推导出水底(3)的任何沉降和/或上升 (1)和由于管(1)的内部(13)中的低压液体的静水流体压力的变化而由压力传感器测量的流体压力的相关变化。 管(1)配备有一系列阀(10),其在下降期间将其内部(13)分成一系列密封段,以保护压力传感器(2)免受管(1)内的液体的静水压力, 在安装过程中。 使用填充有低压液体的耐压管(1)允许使用敏感的压力传感器(2),其能够监测在水深处与〜1cm的水底沉降相关联的-0.001巴的压力变化 >公里,其中环境水压可能> 100巴。
    • 6. 发明申请
    • A BOILER AND A SUPERHEATER, AS WELL AS A METHOD
    • 锅炉和超级加热器,作为一种方法
    • WO2011131842A2
    • 2011-10-27
    • PCT/FI2011/050365
    • 2011-04-21
    • METSO POWER OYRANTEE, AskoMÄKELÄ, KariJÄÄSKELÄINEN, Kari
    • RANTEE, AskoMÄKELÄ, KariJÄÄSKELÄINEN, Kari
    • F22G3/008F22B37/025
    • A boiler and a method in a boiler (1) producing thermal energy, the method comprising: combustion or fuel and combustion air in the furnace (2) of the boiler, delimited by walls; receiving of thermal energy by a steam superheater (15) placed on the wall of the furnace and comprising at least one heat exchange surface (21), and supplying of gas or a gas mixture to the front of said heat exchange surface to form a barrier layer (18) for protecting the heat exchange surface from flue gases (19) developed in connection with the combustion. At least one supply device (17) is provided in the superheater or in the direct vicinity of the superheater, to supply gas or a gas mixture to the front of said heat exchange surface to form a barrier layer (18) to protect the heat exchange surface from the flue gases (19) in the boiler. In one example, a supply device matrix is provided in the area delimited by the superheater.
    • 一种锅炉和一种产生热能的锅炉(1)中的方法,所述方法包括:在炉壁(2)内的燃烧或燃料和燃烧空气,由壁限定; 通过放置在炉壁上的蒸汽过热器(15)接收热能,并包括至少一个热交换表面(21),并将气体或气体混合物供应到所述热交换表面的前部以形成屏障 层(18),用于保护热交换表面免受与燃烧有关的烟气(19)的影响。 至少一个供应装置(17)设置在过热器中或直接靠近过热器,以将气体或气体混合物供应到所述热交换表面的前部,以形成阻挡层(18),以保护热交换 来自锅炉中烟道气(19)的表面。 在一个示例中,在由过热器限定的区域中提供供应装置矩阵。
    • 7. 发明申请
    • METHOD FOR MONITORING DEFORMATION OF WELL EQUIPMENT
    • 监测设备变形的方法
    • WO2010076281A2
    • 2010-07-08
    • PCT/EP2009/067866
    • 2009-12-23
    • SHELL INTERNATIONALE RESEARCH MAATSCHAPPIJ B.V.JÄÄSKELÄINEN, Kari-Mikko
    • JÄÄSKELÄINEN, Kari-Mikko
    • E21B47/00E21B47/06
    • E21B47/011E21B17/026E21B43/08E21B43/10E21B43/24E21B43/2401E21B47/0006E21B47/01E21B47/065E21B47/123G01V8/16
    • A method of monitoring deformation and other characteristics of a casing, sandscreen, electrical heater and/or other tubular or cylindrical well equipment in a well traversing an underground formation, comprises: - providing a carrier rod having at least one recess extending along at least part of the length of the rod, in which recess a optical fiber assembly for monitoring strain, temperature and/or other physical parameters is arranged, which optical fiber assembly is along at least part of its length bonded within the recess; - lowering the carrier rod and well equipment simultaneously into the well such that the carrier rod is arranged in an annular space between the outer surface of the well equipment and the inner surface of the wellbore; - securing the carrier rod at a plurality of locations distributed along its length to the well equipment; - connecting the optical fiber assembly to an optical signal transmission and reception assembly for monitoring deformation, strain, temperature and/or other physical parameters of the well equipment.
    • 一种在穿过地下地层的井中监测壳体,砂筛,电加热器和/或其它管状或圆柱形井设备的变形和其它特性的方法包括: - 提供承载杆,该承载杆具有沿着至少部分延伸的至少一个凹部 杆的长度,其中布置有用于监测应变,温度和/或其他物理参数的光纤组件,该光纤组件沿其长度的至少一部分长度在凹部内结合; - 将承载杆和井设备同时下放到井中,使得承载杆布置在井设备的外表面和井筒的内表面之间的环形空间中; - 将承载杆固定在沿其长度分布在井设备上的多个位置处; - 将光纤组件连接到用于监测井设备的变形,应变,温度和/或其他物理参数的光信号传输和接收组件。
    • 10. 发明申请
    • METHOD FOR INSTALLING A DOUBLE ENDED DISTRIBUTED SENSING FIBER OPTICAL ASSEMBLY WITHIN A GUIDE CONDUIT
    • 在指导管道中安装双端分布式感应光纤组件的方法
    • WO2005014976A1
    • 2005-02-17
    • PCT/EP2004/051602
    • 2004-07-26
    • SHELL INTERNATIONALE RESEARCH MAATSCHAPPIJ B.V.SHELL CANADA LIMITEDJÄÄSKELÄINEN, Kari-MikkoVAN DER SPEK, Alexander Michael
    • JÄÄSKELÄINEN, Kari-MikkoVAN DER SPEK, Alexander Michael
    • E21B47/12
    • E21B47/06E21B47/123G02B6/4463
    • A method of installing a double ended distributed sensing optical fiber assembly (2) within a guide conduit (1), such as a small diameter control line in an underground borehole, comprises: providing a nose section (3) having an outer width (W) which is less than I cm, preferably less than 5 mm, which nose section (3) interconnects the proximal ends (4C and 4D) of two sections (4A and 4B) of distributed sensing fiber optical cable such that light transmitted along the length of one section of fiber optical cable (4A)is transmitted via the nose section (3) into the other section (4B) of fiber optical cable; inserting the nose section (3) into the guide conduit (1) such that the nose section (3) moves through the guide conduit (1) ahead of said two sections (4A and 4B) of distributed sensing fiber optical cable that are interconnected thereby; and connecting the distal ends (4E and 4F) of the sections of distributed sensing fiber optical cable to a light transmission and receiving unit (7) which is configured to convert the light spectra backscattered from different points of the fiber optical cable into distributed temperature, pressure and/or other physical data.
    • 一种将双端分布式传感光纤组件(2)安装在导管(1)内的方法,例如地下钻孔中的小直径控制线,包括:提供具有外部宽度(W ),其小于1cm,优选小于5mm,所述鼻部(3)将分布式感测光纤光缆的两个部分(4A和4B)的近端(4C和4D)互连,使得沿着长度 的一段纤维光缆(4A)通过鼻部(3)传输到光纤光缆的另一部分(4B); 将鼻部(3)插入引导管(1)中,使得鼻部(3)在由其互连的分布式感测光纤光缆的两个部分(4A和4B)之前移动通过引导导管(1) ; 并且将分布式感测光纤光缆部分的末端(4E和4F)连接到光传输和接收单元(7),该光传输和接收单元(7)被配置为将从光纤光缆的不同点反向散射的光谱转换成分布的温度, 压力和/或其他物理数据。