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    • 82. 发明公开
    • 선박 의장 공정 및 자재 관리를 위한 실시간 모니터링 시스템
    • 管理运输过程和材料的实时监控系统
    • KR1020140070817A
    • 2014-06-11
    • KR1020120135645
    • 2012-11-27
    • 에스티엑스조선해양 주식회사
    • 최우성유지헌김은영백승우이석현임래수김호경허주호
    • G06Q50/04G06Q10/06G06Q50/10
    • Y02P90/30G05B19/41865G06Q10/0631G06Q50/04
    • The present invention relates to a development of a system which can manage usage of delivered outfitting materials in real time. The objective of the present invention is to effectively solve problems caused by manual management of information about outfitting materials delayed or transferred to a following department. To achieve the objective of the present invention, a real-time monitoring system for managing ship outfitting process and materials comprises an on-site collection module (10) arranged in a production department to manage outfitting materials; a server system (20) to calculate a degree of progress of a block on each surface plate by analyzing collected information; a database (30) to store and inquire a list of the blocks arranged on the respective surface plates and a list of the managed outfitting materials; an inspection system (40) to inquire inspection results of the block whose outfitting work is completed; a material management system (50) to inquire the list of the outfitting materials requested to be delivered by the production department; and a smart device (60) to stock the delayed and following lists on site.
    • 本发明涉及可以实时管理所提供的装备材料的使用的系统的开发。 本发明的目的是有效地解决手动管理延迟或转移到后续部门的擅长材料的信息所引起的问题。 为了实现本发明的目的,用于管理船舶装备过程和材料的实时监测系统包括:布置在生产部门中的管理装备材料的现场采集模块(10) 服务器系统(20),通过分析收集的信息来计算每个平板上的块的进度; 数据库(30),用于存储和查询布置在各个表面板上的块的列表和管理的装备材料的列表; 检查系统(40),查询完成竣工的块的检查结果; 物料管理系统(50),查询生产部门要求交付的out装材料清单; 以及智能设备(60),用于在现场存储延迟和以下列表。
    • 84. 发明公开
    • 인바 천공용 다이스
    • 液化天然气储存中冲击孔的装置
    • KR1020140067816A
    • 2014-06-05
    • KR1020120135551
    • 2012-11-27
    • 에스티엑스조선해양 주식회사
    • 강진일박금기송시명김호경허주호
    • B21D28/34B30B15/02
    • B21D28/34
    • The present invention relates to an invar punching dice. In the dice that is coupled with a setting plate and punches a part of a surface of an invar, the dice includes a coupling portion having one end coupled with the setting plate; and a shearing portion that is formed on one side of the coupling portion and has a punching blade formed to punch the surface of the invar. An inclined portion having a decreasing diameter is formed on the other side of the shearing portion so that the circumference of a punching portion is not subjected to contact interference after invar punching. Accordingly, the dice can be easily drawn out after an invar punching operation. In addition, the punching blade is formed into a polygon, examples of which include a triangle or polygons with at least four corners, and thus wear resistance can be much improved at parts in contact with the invar. Also, a shearing force can be increased for easy punching even when the invar is thick.
    • 本发明涉及一种冲压骰子。 在与设置板耦合并且冲压一部分殷钢表面的骰子中,骰子包括具有与安装板结合的一端的联接部分; 以及剪切部,其形成在所述联接部的一侧上,并具有形成为冲压所述突起的表面的冲压刀。 在剪切部分的另一侧上形成具有减小的直径的倾斜部分,使得冲压部分的圆周在冲压后不会受到接触干扰。 因此,骰子可以在无冲击冲压操作之后容易地拉出。 此外,冲压刀片形成为多边形,其实例包括具有至少四个角的三角形或多边形,因此在与凹入部接触的部件处可以大大改善耐磨性。 此外,即使当堰厚时,也可以增加剪切力以便于冲压。
    • 85. 发明公开
    • 가스 수화물 해리를 통한 응축열 회수, 기체 가압 및 전기 생산 시스템 및 방법
    • 回收热量,压缩气体和使用气体分解产生电力的系统和方法
    • KR1020140066004A
    • 2014-05-30
    • KR1020120133176
    • 2012-11-22
    • 에스티엑스조선해양 주식회사
    • 김철호김호경허주호
    • F02C6/18F02M25/08F02C7/00F02C9/00
    • The present invention relates to a system and a method to recover condensation heat, compressing a gas, and producing electricity through dissociation of a gas hydrate and, more specifically, to a system and the method to recover condensation heat generated when a natural gas hydrate is dissociated to operate a gas turbine using a jetted gas, and to produce electricity using the gas turbine. The system to recover the condensation heat, compressing the gas, and producing electricity through the dissociation of the gas hydrate is a system to recover the condensation heat and produce electricity through the dissociation of the gas hydrate comprising: a gas hydrate dissociating apparatus supplying gas, which is dissociated from the gas hydrate, to a demander through a valve connected to a pipe and performing heat exchange by heating a reactor, which has the gas hydrate loaded therein, using an external heater part; the gas turbine providing a rotating force for the rotating blades thereof using the gas supplied from the gas hydrate dissociating apparatus; and a generator interlocked with the gas turbine, receiving the rotating force, and producing the electricity by rotating the rotary shaft thereof using the rotating force, wherein the gas hydrate dissociating apparatus compresses the gas generated from the reactor by adjusting the pressure and temperature in the reactor using the heater part and a compressing valve connected to the valve in parallel when dissociating the gas hydrate. According to the present invention, the system and method to recover the condensation heat, compressing the gas, and producing electricity through the dissociation of the gas hydrate is able to compress the gas in a sealed pressure vessel by adjusting the temperature and pressure in the pressure vessel without using a compressor when dissociating the gas hydrate.
    • 本发明涉及一种通过气体水合物的解离来回收冷凝热,压缩气体和产生电力的系统和方法,更具体地说,涉及一种系统和回收当天然气水合物是 解离以使用喷射气体操作燃气轮机,并且使用燃气轮机产生电力。 通过天然气水合物的解离来回收冷凝热,压缩气体和产生电力的系统是通过气体水合物的解离来回收冷凝热并产生电力的系统,包括:气体水合物解离装置, 其通过与管连接的阀通过加热其中装载有天然气水合物的反应器使用外部加热器部进行热交换而与气体水合物分离; 所述燃气轮机使用从所述气体水合物解离装置供给的气体为所述旋转叶片提供旋转力; 以及与燃气轮机联动的发电机,接收旋转力,并通过使用旋转力使其旋转轴旋转来产生电力,其中,气体水合物解离装置通过调节反应器中的压力和温度来压缩从反应器产生的气体 使用加热器部分的反应器和在解离气体水合物时并联连接到阀的压缩阀。 根据本发明,通过气体水合物的解离来回收冷凝热,压缩气体和产生电力的系统和方法能够通过调节压力中的温度和压力来压缩密封压力容器中的气体 在气体水合物解离时不使用压缩机的容器。
    • 87. 发明公开
    • 천연 가스 수화물 재기화를 위한 드레인 타워 장치
    • 排水塔装置用于NGH注册
    • KR1020140058155A
    • 2014-05-14
    • KR1020120124836
    • 2012-11-06
    • 에스티엑스조선해양 주식회사
    • 김철호김호경허주호
    • B63B25/04F17C11/00B63J2/12B63B25/16
    • The present invention relates to a drain tower apparatus for natural gas hydrate (NGH) regasification and, more particularly, to an apparatus for continuously discharging hot water and a dissociation solution injected in order to dissociate NGH. The drain tower apparatus for NGH regasification is a draining apparatus for a cargo hold installed on the internal bottom of the cargo hold, which comprises: a base unit which has a cylindrical shape and is installed on the internal bottom of the cargo hold; and a heating tube unit which has an inlet and an outlet, and is formed of multiple thin and long U-shaped heating tubes. Here, each of the multiple U-shaped heating tubes is vertically combined with a column having a fixed diameter in the upper part of the base unit at an interval from an adjacent U-shaped heating tube. Therefore, the drain tower apparatus for NGH regasification can prevent the freezing and failure of an injection nozzle when injecting hot water for directly supplying heat in order to dissociate NGH.
    • 本发明涉及一种用于天然气水合物(NGH)再气化的排水塔装置,更具体地,涉及一种用于连续排出热水和注入的离解溶液以便解离NGH的装置。 用于NGH再气化的排水塔装置是安装在货舱的内底上的货舱的排水装置,其包括:具有圆筒形状并安装在货舱内部底部的基座单元; 以及具有入口和出口的加热管单元,并且由多个薄且长的U形加热管形成。 这里,多个U形加热管中的每一个与相邻的U形加热管的间隔在基部单元的上部垂直地与具有固定直径的列垂直组合。 因此,为了分离NGH,用于NGH再气化的排水塔装置可以防止喷射热水器在注入热水直接供热时的冷冻和失效。
    • 88. 发明公开
    • 천연 가스 수화물 수송선의 하역을 위한 재기화 시스템
    • NGH载体卸载注册系统
    • KR1020140058154A
    • 2014-05-14
    • KR1020120124835
    • 2012-11-06
    • 에스티엑스조선해양 주식회사
    • 김철호김호경허주호
    • B63B25/04F17C11/00B63J2/12B63B25/16
    • The present invention relates to a regasification system for the unloading of a natural gas hydrate (NGH) carrier and, more particularly, to an apparatus for discharging water (a mixed solution) and gas after performing direct dissociation inside a cargo hold for storing NGH. The regasification system for the unloading of an NGH carrier is a system for the regasification of NGH stored in a cargo hold in a ship, which comprises; a gasification heat supplying device which supplies hot water to the cargo hold using a heat source supplied from the outside; a gas treating device which collects gas generated by NGH dissociated by the hot water supplied from the gasification heat supplying device, and reuses the gas; and a drain tower device which has a heating function so that a mixed solution in the cargo hold dissociated by the hot water can continuously circulate and be supplied to the gasification heat supplying device again. Therefore, the regasification system for the unloading of an NGH carrier can prevent the freezing and failure of an injection nozzle when injecting hot water for directly supplying heat in order to dissociate NGH.
    • 本发明涉及一种用于卸载天然气水合物(NGH)载体的再气化系统,更具体地说,涉及一种在用于储存NGH的货舱内的直接解离之后排出水(混合溶液)和气体的装置。 卸载NGH运输船的再气化系统是一种重新储存在船上货舱中的NGH系统,其中包括: 气化供热装置,其使用从外部供应的热源向所述货舱提供热水; 收集由从气化供热装置供给的热水分解的NGH产生的气体并再利用气体的气体处理装置; 以及具有加热功能的排水塔装置,使得由热水分解的货舱中的混合溶液可以连续循环并再次供给到气化供热装置。 因此,为了分离NGH,用于卸载NGH载体的再气系统可以防止注射喷嘴在注入热水直接供热时的冷冻和失效。
    • 89. 发明公开
    • 비계 시스템의 코너부 조절 장치의 운용 방법
    • 角部零件装置的操作方法
    • KR1020130116222A
    • 2013-10-23
    • KR1020130103084
    • 2013-08-29
    • 에스티엑스조선해양 주식회사
    • 김종규허주호김호경박금기강진일임성현강호석정준식이상호남권
    • B63B9/00E04G3/28E04G7/00B63B25/16
    • PURPOSE: An operation method of a corner part adjusting device for a scaffolding system is provided to optimize a distance from scaffolds to a work point by independently operating the scaffolds in corner parts. CONSTITUTION: An operation method of a corner part adjusting device for a scaffolding system is as follows. Each of wall scaffolds (330) is divided into multiple wall scaffold elements, and one or more wall scaffold elements among multiple wall scaffold elements are arranged on a wall in a row. Each of corner scaffolds (320) is divided into first, second, and third corner scaffold elements (321, 322, 323), and the first and second corner scaffold elements are arranged on a corner. The second corner scaffold element has a smaller size than the first corner scaffold element. The third corner scaffold element has a smaller size than the second corner scaffold element. [Reference numerals] (AA) Baggage rack
    • 目的:提供一种用于脚手架系统的拐角部分调节装置的操作方法,以通过独立地操作拐角部分中的支架来优化从脚手架到工作点的距离。 构成:脚手架系统的角部调整装置的动作方法如下。 每个墙壁支架(330)被分成多个壁脚手架元件,并且多个壁脚手架元件中的一个或多个壁脚手架元件布置在一排的壁上。 每个角落支架(320)被分成第一,第二和第三角部脚手架元件(321,322,323),并且第一和第二角落脚手架元件布置在拐角处。 第二个角落脚手架元素的尺寸比第一个角落脚手架元素小。 第三角落脚手架元件的尺寸比第二角落脚手架元件小。 (标号)(AA)行李架
    • 90. 发明公开
    • 비계 시스템의 코너부 조절 장치의 운용 방법
    • 角部零件装置的操作方法
    • KR1020130116051A
    • 2013-10-22
    • KR1020130103083
    • 2013-08-29
    • 에스티엑스조선해양 주식회사
    • 김종규허주호김호경박금기강진일임성현강호석정준식이상호남권
    • B63B9/00E04G3/28E04G7/00B63B25/16
    • PURPOSE: An operation method of a corner adjusting device in a scaffolding system is provided to effectively prevent safety accidents and reduce the time required for operating a scaffold by optimizing the distance from the scaffold to a work point. CONSTITUTION: An operation method of a corner adjusting device in a scaffolding system is as follows. A wall scaffold (330) is subdivided into one or more wall scaffold elements (331). The wall scaffold elements are coupled to the wall surface of a cargo hold. A corner scaffold (320) is subdivided into first, second, and third corner scaffold elements (321, 322, 323). The second corner scaffold element has a smaller size than the first corner scaffold element. The third corner scaffold element has a smaller size than the second corner scaffold element. The first, second, and third corner scaffold elements are coupled to the corners of the cargo hold. [Reference numerals] (AA) Baggage rack
    • 目的:提供一种脚手架系统中角部调节装置的操作方法,通过优化从脚手架到工作点的距离,有效防止安全事故,减少操作脚手架所需的时间。 构成:脚手架系统中的角部调节装置的操作方法如下。 墙壁支架(330)被细分成一个或多个壁脚手架元件(331)。 墙壁脚手架元件联接到货舱的墙壁表面。 拐角脚手架(320)被细分为第一,第二和第三角脚手架元件(321,322,323)。 第二个角落脚手架元素的尺寸比第一个角落脚手架元素小。 第三角落脚手架元件的尺寸比第二角落脚手架元件小。 第一,第二和第三角脚手架元件联接到货舱的角落。 (标号)(AA)行李架