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Journal articles on the topic 'Automated piping'

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1

Choi, Jaeh Yun, and Kyu Sung Lee. "An Automated Progress Tracking System for Industrial Facility Construction Projects." Advanced Materials Research 671-674 (March 2013): 2973–77. http://dx.doi.org/10.4028/www.scientific.net/amr.671-674.2973.

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As amount of information in construction industry is growing, the role of information system in project management is becoming increasingly important. With the emerging IT application to the advancing construction industry, construction project management system with advanced technology has been progressed vigorously to improve construction productivity and management efficiency. Recently, a web-based Project Management Information System (PMIS) is developed to support decision-making process by efficiently managing project related information generated from various discipline. Many firms are
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Li, Rui, Yu Jun Liu, and Kunihiro Hamada. "Research on the ITOC Based Solutions for Ship-Piping Jobshop Scheduling." Advanced Materials Research 314-316 (August 2011): 2046–54. http://dx.doi.org/10.4028/www.scientific.net/amr.314-316.2046.

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Manufacturing of ship piping systems is one of the major production activities in shipbuilding. The schedule of pipe production has an important impact on the master schedule of shipbuilding. In this research, the ITOC concept was introduced to solve the scheduling problems of a piping jobshop, and an intelligent scheduling system was developed. The system, in which a product model, an operation model, a factory model, and a knowledge database of piping production were integrated, automated the planning process and production scheduling. Details of the above points were discussed. Moreover, an
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Davis Nicholas, Arthur, Divakara Ardi Sankayya Shetty, Geetha Baskaran, Ahmed Hamed Al Adwani, and Lizette Ivy Pascual. "Artificial Intelligence-Based Scanner to Locate Flow Anomalies in Water Transmission and Distribution Networks." IOP Conference Series: Earth and Environmental Science 1401, no. 1 (2024): 012006. http://dx.doi.org/10.1088/1755-1315/1401/1/012006.

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Abstract The Water Transmission and Distribution sector in Oman is confronted with various challenges, such as flow loss during transportation, negative pressure accumulation, and conflicts in billing consumption in the Water Transmission and Distribution Network(WTDN). To address these and resolve the challenges, a research team, consisting of the authors of this paper, has proposed a wireless flow scanner specifically planned for this purpose. Currently, the proposed cutting-edge wireless AI Water Flow Scanner is undergoing development and finally, be tested in a 540 m total length pilot pip
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Wu, Xiaoyu, Zhibin He, Zhenghao Wei, Qi Zhang, and Zhibo Fan. "Visualization Program Design for Complex Piping Systems in Marine Engine Simulation Systems." Applied Sciences 14, no. 6 (2024): 2497. http://dx.doi.org/10.3390/app14062497.

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This study is dedicated to the development of an advanced ship piping network programming tool to address the challenges faced by traditional text-based design and computation methods when dealing with complex and large-data-volume piping systems, such as burdensome programming tasks, high error rates, and difficulty in troubleshooting faults. Leveraging Microsoft’s WPF technology and the C# language, combined with Excel as a data input platform, this tool provides an intuitive graphical user interface, allowing users to intuitively build and analyze ship piping network models by dragging and
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Li, Junjie, Hang Guan, Peng Xu, Jiefan Gu, and Liyan Dong. "Automated layout generation of HVAC piping from building floor plans." Automation in Construction 177 (September 2025): 106359. https://doi.org/10.1016/j.autcon.2025.106359.

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Ghosal, Surajit. "AUT of Thick Duplex Piping Hook-Up Joints Offshore." Materials Performance 58, no. 8 (2019): 48–51. https://doi.org/10.5006/mp2019_58_8-48.

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Duplex stainless steel piping 75-mm thick was selected for an offshore platform due to the extremely corrosive nature of well fluid at high temperatures and pressures. All butt weld joints were inspected during inland fabrication, except hook-up joints to be welded offshore. Radioactive isotope of iridium (192Ir) was used and is covered in the article. Due to limitations of conventional ultrasonic testing (UT), an automated UT (AUT) technique was employed as an alternative to radiographic testing on the offshore platform to ensure integrity of hook-up joints after a successful demonstration an
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Choi, Sung-Nam, Sung-Yull Hong, and Won-Gul Hwang. "Performance demonstration for an automated ultrasonic testing system for piping welds." Journal of Nuclear Science and Technology 49, no. 5 (2012): 562–70. http://dx.doi.org/10.1080/00223131.2012.676821.

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Tan, Wei Chian, I.-Ming Chen, Sinno Jialin Pan, and Hoon Kiang Tan. "Analysis With Histogram of Connectivity: For Automated Evaluation of Piping Layout." IEEE Transactions on Automation Science and Engineering 15, no. 1 (2018): 381–92. http://dx.doi.org/10.1109/tase.2017.2764107.

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Yaw Long Chua, Shaik Mohamed Faizal Mohamed Bharuddin, and Yit Yan Koh. "Design and Development of Automated Indoor Farming with Alert System." Journal of Advanced Research in Applied Sciences and Engineering Technology 31, no. 2 (2023): 210–19. http://dx.doi.org/10.37934/araset.31.2.210219.

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Indoor farming is becoming an addition to conventional farming practices. This project focused on designing a new, multilevel automated aeroponics system. This newly designed prototype includes an alert system that can alert the user at low water tank levels. The proposed multilevel aeroponic was tested for suitability for maximum plant growth configurations. The prototype development consists of several phases: primary structure, plastic container, water piping, and system setup. Various experiments were conducted within five weeks. The configurations involve changing lighting hours and irrig
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Neumaier, Moritz, Stefan Kranemann, Bernd Kazmeier, and Stephan Rudolph. "Automated Piping in an Airbus A320 Landing Gear Bay Using Graph-Based Design Languages." Aerospace 9, no. 3 (2022): 140. http://dx.doi.org/10.3390/aerospace9030140.

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System design in an aircraft is still a costly, manual and iterative approach. One major cost driver of changes in system installation are design efforts for creating new pipes in an earlier stage and the costs accumulated during the in service life. To reduce these costs and the time to market, an automation approach with an integrated design optimization encoded in graph-based design languages and executable in a design compiler is proposed. To generate the pipe work automatically, a set of input data (e.g., start- and end-points of a pipe with tangents and fixing positions) is given by the
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Yin, Chao, Jack C. P. Cheng, Boyu Wang, and Vincent J. L. Gan. "Automated classification of piping components from 3D LiDAR point clouds using SE-PseudoGrid." Automation in Construction 139 (July 2022): 104300. http://dx.doi.org/10.1016/j.autcon.2022.104300.

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Finney, Leonard, and Kamiel Gabriel. "Safety Analysis of the Hydrolysis Reactor in the Cu-Cl Thermochemical Hydrogen Production Cycle—Part 1: Methodology and Selected Top Events." Energies 17, no. 5 (2024): 1002. http://dx.doi.org/10.3390/en17051002.

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In this paper, IEC 61511 was used to evaluate the hazards and risks associated with the continuous operation of the hydrolysis reactor system in the copper-chlorine thermochemical hydrogen production cycle, with a specific focus on the application of automated active safety systems and safety integrated systems. The analysis presented herein was performed using a speculative but representative hydrolysis piping and instrumentation diagram (P&ID) for the hydrolysis reaction, which was based on currently published systems as well as experience with experimental hydrolysis reactors. This anal
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Baek, Seung, Jae Mean Koo, and Chang Sung Seok. "Evaluation of the Degradation Characteristics of CF-8A Cast Stainless Steel Using Indentation Techniques and EDS." Key Engineering Materials 306-308 (March 2006): 869–74. http://dx.doi.org/10.4028/www.scientific.net/kem.306-308.869.

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Cast austenitic stainless steel piping pump, valve casings and elbows are susceptible to reductions in toughness and ductility because of long term exposure at the operating temperatures in the LWR (light water reactor). In this study, the three classes of thermally aged CF-8A cast austenitic stainless steel specimens were prepared using an artificially accelerated aging method for 0, 2,679 and 3,572 hours at 400oC. An indentation technique was applied to evaluate of the thermal aging of CF-8A cast austenitic stainless steel. We have performed indentation tests (automated ball indentation and
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Carpenter, Chris. "Artificial-Intelligence and Machine-Learning Technique for Corrosion Mapping." Journal of Petroleum Technology 74, no. 01 (2022): 99–102. http://dx.doi.org/10.2118/0122-0099-jpt.

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This article, written by JPT Technology Editor Chris Carpenter, contains highlights of paper SPE 202801, “Automated Corrosion Mapping AI and Machine Learning,” by Marc Majors and Travis Harrington, Occidental, and Eric Ferguson, Abyss Solutions, et al. The paper has not been peer reviewed. The complete paper discusses risk reduction and increased fabric-maintenance (FM) efficiency using artificial-intelligence (AI) and machine-learning (ML) algorithms to analyze full-facility imagery for atmospheric corrosion detection and classification. With this tool, a comprehensive and objective analysis of a
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Pilipenko, Aleksandr, and Sergei Petrov. "Computer Simulation and Modelling System of Non-Stationary Heat Exchange Processes." MATEC Web of Conferences 155 (2018): 01036. http://dx.doi.org/10.1051/matecconf/201815501036.

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This article suggests the solution to the up-to-date task of improving and increasing the energy efficiency of buildings and quality of functioning of systems, controlling boilers and heating devices, by using computer simulation and modelling of heat exchange processes of the building and operation of the heating systems. The authors present proven (checked) mathematical models, applicable for external protections, rooms, heaters, boilers, insulated and non-insulated piping. The authors offer an automated system of computer simulation and modelling, which not only allows us to solve mathemati
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Santos, David, Miguel A. Machado, João Monteiro, et al. "Non-Destructive Inspection of High Temperature Piping Combining Ultrasound and Eddy Current Testing." Sensors 23, no. 6 (2023): 3348. http://dx.doi.org/10.3390/s23063348.

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This paper presents an automated Non-Destructive Testing (NDT) system for the in-service inspection of orbital welds on tubular components operating at temperatures as high as 200 °C. The combination of two different NDT methods and respective inspection systems is here proposed to cover the detection of all potential defective weld conditions. The proposed NDT system combines ultrasounds and Eddy current techniques with dedicated approaches for dealing with high temperature conditions. Phased array ultrasound was employed, searching for volumetric defects within the weld bead volume while Edd
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17

Xie, Qijun, Wenjie Cao, and Jinchuan Wang. "Exploration of Innovative Technology for Project Management of Large Construction Projects Based on Revit Secondary Development." ce/papers 8, no. 2 (2025): 1422–32. https://doi.org/10.1002/cepa.3228.

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AbstractThis paper takes Changde Red Education Base as a case study to explore the application of secondary development in BIM‐related software. This paper adopts the enumeration method, based on the modeling of Revit software, and the secondary development of Revit using Visual Studio and Dynamo, which realizes the efficient and automated tasks of modeling structure, architecture, decoration, piping, and other parts of the Changde Red Education Base. solution, and improves the applicability and customization of BIM‐related software in the project. This paper supplements the theory related to
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18

Al-Yemni, Abdulrhman, Saad Al-Balam, Saad Al-Kulib, and Qasem Abu Al-Haija. "AN ARDUINO BASED SMART FAUCET DESIGN." COMPUSOFT: An International Journal of Advanced Computer Technology 07, no. 05 (2018): 2752–54. https://doi.org/10.5281/zenodo.14807506.

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In this paper, we propose a new design of smart faucet system that measures the body’s temperature prior the water falling in pipes by using DS18B20 sensor an act correspondingly. The design was implemented using Arduino Uno Microcontroller that is connected with temperature senor to control two water valves (i.e. Hot & Cold) in order to mix the proper amount of hot and cold water conforming the body temperature. The proposed design can be easily adapted to the water piping system of already constructed buildings by replacing the old faucets with the new automated ones. Such design c
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Wu, Xiaoyu, Zhibin He, Shufeng Liu, and Zhongkai Yu. "Visual Modeling Method for Ship Piping Network Programs in Engine Simulators." Applied Sciences 14, no. 20 (2024): 9194. http://dx.doi.org/10.3390/app14209194.

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Nowadays, engine room simulators have become an important tool for maritime training, but programming engine room simulators often involves handling large amounts of data, making the process inefficient. This paper proposes an innovative visual modeling method for the ship pipeline network program in engine room simulators, aimed at addressing the heavy programming tasks associated with traditional text-based design and calculation methods when dealing with complex and large-scale pipeline systems. By creating Scalable Vector Graphics (SVG) images and using Windows Presentation Foundation (WPF
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20

Saini, Anuj, Vibhuti Rehalia, Abhay Talgotra, and Shobit. "Design and Assessment of Automatic Arc Welding Machine Based on Programming Logic Controller." International Journal of Engineering and Management Research 14, no. 6 (2024): 31–37. https://doi.org/10.31033/ijemr.14.6.31-37.

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In the industry, automated technologies have gained significant traction since they appreciably contribute to productivity and enable better, faster production with less worker management. Equipment used in welding processes in different locations might cause problems for the welder, particularly when large regions are needed. An Arc welding machine is commonly used in the Automobile industry, railroads, industrial piping, and bridge power plants. An arc welding machine requires skilled workers to be properly safe. The present research provides the design of an autonomous robotic arc welding s
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Ayurova, O. B., E. M. Badashkeeva, A. B. Tsybenova, V. B. Tsybenov, and V. I. Tankov. "Development of measures to modernize the heating system in ESSUTM academic building No. 7 and evaluation of economic efficiency." Izvestiya vuzov. Investitsii. Stroitelstvo. Nedvizhimost 14, no. 1 (2024): 30–45. http://dx.doi.org/10.21285/2227-2917-2024-1-30-45.

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The present work is aimed at analyzing the heating system operation in academic building No. 7 and developing measures to modernize this system with an evaluation of economic efficiency. The analysis involved a thermal analysis of exterior wall envelopes, an on-site inspection of the heating system, as well as measurements of internal microclimate parameters and thermal imaging. Heat losses in rooms were calculated, and a verification hydraulic analysis of the heating system was performed. The inspection revealed deficiencies in the operation of the existing heating system, and two options for
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Honti, Richard, Ján Erdélyi, and Alojz Kopáčik. "Semi-Automated Segmentation of Geometric Shapes from Point Clouds." Remote Sensing 14, no. 18 (2022): 4591. http://dx.doi.org/10.3390/rs14184591.

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Building information models (BIM) in the civil industry are very popular nowadays. The basic information of these models is the 3D geometric model of a building structure. The most applied methodology to model the existing buildings is by generating 3D geometric information from point clouds provided by laser scanners. The fundamental principle of this methodology is the recognition of structures shaped in basic geometric primitives, e.g., planes, spheres, and cylinders. The basic premise of the efficiency of this methodology is the automation of detection, since manual segmentation of a point
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Singh, Jyoti, and Chimay J. Anumba. "Real-time pipe system installation schedule generation and optimization using artificial intelligence and heuristic techniques." Journal of Information Technology in Construction 27 (February 23, 2022): 173–90. http://dx.doi.org/10.36680/j.itcon.2022.009.

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Infrastructure systems in the United States are aging and considerable investment is needed to renew and replace a significant proportion of the existing systems. Piping systems, which are used in many infrastructure systems such as the distribution networks for utilities – water, sewage, gas, oil, etc., are very important in this regard. Real time scheduling is an important and necessary task in the planning and execution of construction projects. This is of particular importance in the installation of pipe systems, for which it is time consuming to plan and coordinate between team members th
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Yaw Long Chua, Jay Shen Gan, and Yit Yan Koh. "Urban Farming Prototype Design and Development with IoT System using STEMSEL and Runlinc IDE." Journal of Advanced Research in Applied Sciences and Engineering Technology 31, no. 2 (2023): 31–41. http://dx.doi.org/10.37934/araset.31.2.3141.

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Urban farming technology is getting more acceptable with the increase in population. Running urban farming with IoT becomes more important as urban farming has many constraints. This project aimed to design and develop an automated urban farming system operated with an IoT system using Science Technology Engineering Maths Social Enterprise Learning Artificial Intelligence (STEMSEL AI), and Runlinc Integrated Development Environment (IDE) to ease urban farming. The prototype consists of three major components: the structural part, the water piping system, and the IoT operating system. Idea gene
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Ananda, Samuel Christian, Muhammad Traya Alfarizi, Ruth Angelica Sitorus, Ghina Khalisah, Muhammad Ikhsan Mubaraq, and Fany Apriliani. "IMPLEMENTATION OF THE SEVEN TOOLS METHOD FOR PRODUCT QUALITY CONTROL: A CASE STUDY AT RUMAH TEMPE INDONESIA." AGRIBUSINESS JOURNAL 19, no. 1 (2025): 7–14. https://doi.org/10.15408/aj.v19i1.46548.

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This study applied the Seven Quality Control Tools to Soyagreen tempe products produced at Rumah Tempe Indonesia from 14 to 19 April, 2025. Analysis via Check Sheets, Flowcharts, Histograms, Pareto Diagrams, Control Charts, Scatter Plots, and Fishbone Diagrams revealed a 12.19% defect rate out of a total production of 1,091 units, consisting of 96% under-fermentation and 4% spoilage. Regression analysis found that each 1 °C increase in fermentation temperature led to an average of 7.57 additional defects. To address these findings, we recommend implementing a preventive-maintenance schedule da
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Rachman, Andika, and R. M. Chandima Ratnayake. "Corrosion loop development of oil and gas piping system based on machine learning and group technology method." Journal of Quality in Maintenance Engineering 26, no. 3 (2019): 349–68. http://dx.doi.org/10.1108/jqme-07-2018-0058.

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Purpose Corrosion loop development is an integral part of the risk-based inspection (RBI) methodology. The corrosion loop approach allows a group of piping to be analyzed simultaneously, thus reducing non-value adding activities by eliminating repetitive degradation mechanism assessment for piping with similar operational and design characteristics. However, the development of the corrosion loop requires rigorous process that involves a considerable amount of engineering man-hours. Moreover, corrosion loop development process is a type of knowledge-intensive work that involves engineering judg
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Ma, Xiaoliang, Hongshe Cui, Yan Zhang, and Xinyao Wang. "Study on Piping Layout Optimization for Chiller-Plant Rooms Using an Improved A* Algorithm and Building Information Modeling: A Case Study of a Shopping Mall in Qingdao." Buildings 15, no. 13 (2025): 2275. https://doi.org/10.3390/buildings15132275.

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Heating, ventilation, and air-conditioning systems account for 40–60% of the energy consumed in commercial buildings, and much of this load originates from sub-optimal piping layouts in chiller-plant rooms. This study presents an automated routing framework that couples Building Information Modeling (BIM) with an enhanced A* search to produce collision-free, low-resistance pipelines while simultaneously guiding component selection. The algorithm embeds protective buffer zones around equipment, reserves maintenance corridors through an attention-based cost term, and prioritizes 135° elbows to c
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Carroll, David M., Angela V. Michelin, Melanie J. Craig, et al. "1227. Replacement and Rerouting of Pipes to Remediate Intractable Contamination of Potable Water Fixtures in a Pair of ICU Rooms." Open Forum Infectious Diseases 6, Supplement_2 (2019): S441. http://dx.doi.org/10.1093/ofid/ofz360.1090.

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Abstract Background “Green” construction approaches may place hospitals at risk for long-term contamination of potable water, presenting hazards for immunosuppressed patients. Remediation may be needed to manage these unanticipated consequences. An indolent, 11-year cluster of Sphingomonas koreensis infections at the NIH Clinical Center was traced to potable water. During the investigation, 4 sinks in 2 ICU rooms were found to have intractable contamination. Despite replacement of sink fixtures, faucet swabs and water continued to grow S. koreensis, and mean free chlorine residual (FCR) from t
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Petrova, Yu A., and V. Yu Sokolov. "Implementation of the methodology to design heat generating facilities using automated calculations and focusing on standard design." Vestnik IGEU, no. 3 (June 30, 2024): 13–19. http://dx.doi.org/10.17588/2072-2672.2024.3.013-019.

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The quality of the project may well determine the operability and cost-effectiveness of the designed facility. There are various design methods, each of which has its advantages and disadvantages, analysis of which can be found in published studies. Thus, a methodology has been developed to reduce the likelihood of an error during system design and to reduce time using calculation programs. The purpose of this study is to implement the developed methodology using the example of designing pumping storage tanks. The study is carried out using a pipeline model designed in the START-Prof software,
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Oyati, E.N., M.E. Ugbodaga, and Rasheed Ibrahim. "Evaluation of an Automated Bamboo-Based Fertigation System on Growth and Yield of Dry Season Vegetable." Journal of Scientific and Engineering Research 9, no. 3 (2022): 54–60. https://doi.org/10.5281/zenodo.10513711.

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<strong>Abstract </strong>Dry season vegetables and the use of bamboo pipe in irrigation systems play a key role in the economy of Nigeria as a basic source of food, income, and employment generation, especially in the off-season of rainfall agriculture. This study was carried out to evaluate the effect of an automated bamboo-based fertigation discharge rate on the growth and yield of <em>Amaranthus cruentus</em> during the dry season period. The fertigation discharge rate from the piping system was varied at 10, 20, 30, 40 drops/min and control. The result of the study revealed that the <em>A
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Balcazar, Ricardo, José de Jesús Rubio, Mario Alberto Hernandez, et al. "Integrated Design and Control of a Sustainable Stormwater Treatment System." Processes 12, no. 4 (2024): 644. http://dx.doi.org/10.3390/pr12040644.

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In this work, issues of water separation and purification are addressed, where, in order to achieve the desired results, it is necessary to use several disciplines such as classical physics, biotechnology, automatic control, automation, and applications of industry 4.0. Further, the need for comprehensive and automated solutions for rainwater treatment in the agricultural sector is addressed. This research focuses on designing and implementing a system adapted to these needs using Siemens technologies. The methodology ranges from the design of the Piping and Instrumentation Diagram (P&amp;ID)
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Hara Krishna Reddy Koppolu, Anil Lokesh Gadi, Shabrinath Motamary, Abhishek Dodda, and Sambasiva Rao Suura. "Dynamic Orchestration of Data Pipelines via Agentic AI: Adaptive Resource Allocation and Workflow Optimization in Cloud-Native Analytics Platforms." Metallurgical and Materials Engineering 31, no. 4 (2025): 625–37. https://doi.org/10.63278/1490.

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The move towards more dynamic machine learning (ML) is present in all sorts of areas within the field, creating a tantalizing possibility to use such methods to not only create models that are more in tune with the constantly changing world we live in and the data which is being generated from it but also a world where the automated pipeline processes behind the ML modeling are severely underutilized. One area that has received little attention in this burgeoning area is most of the work being done under the umbrella of agentic AI, or methods aimed at creating agents that are semi-autonomously
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Meynink, Alex. "Simplicity and digitalisation – using GIS to reduce design and operation costs in gas gathering systems." APPEA Journal 62, no. 2 (2022): S153—S157. http://dx.doi.org/10.1071/aj21058.

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With the drive to continually reduce the cost of connecting new Coal Seam Gas (CSG) wells, Worley developed new methodologies using commercial off-the-shelf software, and custom development, to automate engineering and improve operational efficiency for pipelines and gathering systems. One of the recent developments is an automated and data-driven approach to produce Gathering Network Diagrams (GNDs), an alternative to conventional Piping &amp; Instrumentation Diagrams (P&amp;IDs). On a recent project, Worley implemented a GND workflow capable of showing ~40 wells per A3 deliverable in conform
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Rezaei, Abolfazl, Bahador Samadzadegan, Hadise Rasoulian, et al. "A New Modeling Approach for Low-Carbon District Energy System Planning." Energies 14, no. 5 (2021): 1383. http://dx.doi.org/10.3390/en14051383.

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Designing district-scale energy systems with renewable energy sources is still a challenge, as it involves modeling of multiple loads and many options to combine energy system components. In the current study, two different energy system scenarios for a district in Montreal/Canada are compared to choose the most cost-effective and energy-efficient energy system scenario for the studied area. In the first scenario, a decentral energy system comprised of ground-source heat pumps provides heating and cooling for each building, while, in the second scenario, a district heating and cooling system w
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Vigneron, Adrien, Eric B. Alsop, Brian Chambers, Bartholomeus P. Lomans, Ian M. Head, and Nicolas Tsesmetzis. "Complementary Microorganisms in Highly Corrosive Biofilms from an Offshore Oil Production Facility." Applied and Environmental Microbiology 82, no. 8 (2016): 2545–54. http://dx.doi.org/10.1128/aem.03842-15.

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ABSTRACTOffshore oil production facilities are frequently victims of internal piping corrosion, potentially leading to human and environmental risks and significant economic losses. Microbially influenced corrosion (MIC) is believed to be an important factor in this major problem for the petroleum industry. However, knowledge of the microbial communities and metabolic processes leading to corrosion is still limited. Therefore, the microbial communities from three anaerobic biofilms recovered from the inside of a steel pipe exhibiting high corrosion rates, iron oxide deposits, and substantial a
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Birring, Anmol. "Optimizing Probe Active Aperture for Phased Array Weld Inspections." Materials Evaluation 79, no. 8 (2021): 797–804. http://dx.doi.org/10.32548/2021.me-04220.

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Phased array ultrasonic testing (PAUT) has become a popular nondestructive technique for weld inspections in piping, pressure vessels, and other components such as turbines. This technique can be used both in manual and automated modes. PAUT is more attractive than conventional angle-beam ultrasonic testing (UT), as it sweeps the beam through a range of angles and presents a cross-sectional image of the area of interest. Other displays are also available depending on the software. Unlike traditional A-scan instruments, which require the reconstruction of B- and C-scan images from raster scanni
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Li, Renzhi, Zhonggen Wang, Hongquan Sun, Shugui Zhou, Yong Liu, and Jinping Liu. "Automatic Identification of Earth Rock Embankment Piping Hazards in Small and Medium Rivers Based on UAV Thermal Infrared and Visible Images." Remote Sensing 15, no. 18 (2023): 4492. http://dx.doi.org/10.3390/rs15184492.

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Piping is a major factor contributing to river embankment breaches, particularly during flood season in small and medium rivers. To reduce the costs of earth rock embankment inspections, avoid the need for human inspectors and enable the quick and widespread detection of piping hazards, a UAV image-acquisition function was introduced in this study. Through the collection and analysis of thermal infrared and visible (TIR &amp; V) images from several piping field simulation experiments, temperature increases, and diffusion centered on the piping point were discovered, so an automatic algorithm f
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Hengelbrock, Alina, Axel Schmidt, Heribert Helgers, Florian Lukas Vetter, and Jochen Strube. "Scalable mRNA Machine for Regulatory Approval of Variable Scale between 1000 Clinical Doses to 10 Million Manufacturing Scale Doses." Processes 11, no. 3 (2023): 745. http://dx.doi.org/10.3390/pr11030745.

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The production of messenger ribonucleic acid (mRNA) and other biologics is performed primarily in batch mode. This results in larger equipment, cleaning/sterilization volumes, and dead times compared to any continuous approach. Consequently, production throughput is lower and capital costs are relatively high. Switching to continuous production thus reduces the production footprint and also lowers the cost of goods (COG). During process development, from the provision of clinical trial samples to the production plant, different plant sizes are usually required, operating at different operating
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Gomez Villa, Eduardo Daniel, Utkarsh Maurya, and Julia Melke. "Automated Production of Catalyst Coated Membranes for PEM Water Electrolysis Using a Direct Ultra-Sonic Spray Coating Approach." ECS Meeting Abstracts MA2023-02, no. 42 (2023): 2084. http://dx.doi.org/10.1149/ma2023-02422084mtgabs.

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The production of green hydrogen through polymer electrolyte water electrolysis (PEMWE) has attracted attention in recent years for its potential to enable the widespread use of green hydrogen [1, 2]. This technology particularly impacts important sectors of today’s society such as the agricultural and mobility sectors. Among the different components of an electrolysis cell, the membrane electrode assembly (MEA) is regarded as the most important component for its operation, since it is where the water-splitting reaction takes place. For this reason, the choice of materials and production appro
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Varlamov, Y., V. Kotukh, and K. Palyeyeva. "TECHNOLOGICAL ASPECTS OF ASSESSMENT OF RELIABILITY, QUALITY AND ENVIRONMENTAL SAFETY OF SUPPLEMENTARY MATERIAL FOR MANUFACTURE OF TRANSPORT PIPELINES." Municipal economy of cities 3, no. 156 (2020): 56–61. http://dx.doi.org/10.33042/2522-1809-2020-3-156-56-61.

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When carrying out finishing (finishing and lapping) operations necessary for the manufacture (repair) of products of transport pipeline systems, special attention is paid to the auxiliary materials necessary for the imple-mentation of this technological process. The basis of these materials are chemically active, surfactant, flammable and explosive substances of organic and inorganic origin, developed according to a certain recipe in a strict combination of ingredients and with high requirements for quality output. During the implementation of the technological process of manufacturing or repa
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Marques, Débora Salomon. "Technology Focus: Production and Facilities (December 2022)." Journal of Petroleum Technology 74, no. 12 (2022): 56–57. http://dx.doi.org/10.2118/1222-0056-jpt.

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The COVID-19 pandemic has caused unprecedented circumstances affecting production and facilities. Restrictions in mobility between sites and reduction in manpower challenged the business continuity of several operations. This accelerated the development and implementation of various technological solutions. We can see many examples in the works submitted this year: drone surveillance, inspection robots, digital twins, and automated systems. The digitalization tendency brought by the fourth industrial revolution continues to be the dominant topic of the works submitted. Approximately 28% were o
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Dindorf, Ryszard, and Piotr Wos. "Test of measurement device for the estimation of leakage flow rate in pneumatic pipeline systems." Measurement and Control 51, no. 9-10 (2018): 514–27. http://dx.doi.org/10.1177/0020294018808681.

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Background: Indirect measurements of flow rate serve to determine air consumption, leakage values and characteristics of compressed air systems (CASs). Method: A new method of indirect flow rate measurement in a pneumatic pipeline system was developed. The method enables to measure the controlled leakage in a branch line and was used to construct automatic measuring systems auditing the compressed air systems piping. Results: First, the leak-testing instrument LT-I 200 was designed, constructed, and tested as portable measurement device for the estimation of air leakage flow rate in pneumatic
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Казаков, Валерий, Valeriy Kazakov, Павел Казаков, and Pavel Kazakov. "Performance assessment of fluid power drive at stage of its design using evolutionary simulation." Bulletin of Bryansk state technical university 2015, no. 4 (2015): 135–40. http://dx.doi.org/10.12737/17149.

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In a number of engineering problems in the development of automated systems arises a necessity in the computation and design of a fluid power drive (FPD) in conformity with particular technological schemes for which there are no finished industrial products or it is necessary to carry out a sufficiently exact correspondence of operating characteristics with specified engineering data. In this case one does not carry out the selection of standard elements for a fluid power drive, but performs their designing, where there were used modern approaches and methods of the computeraided design.&#x0D;
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Kawashima, Kazuaki, Satoshi Kanai, and Hiroaki Date. "Automatic Recognition of a Piping System from Laser Scanned Points by Eigenvalue Analysis." Key Engineering Materials 523-524 (November 2012): 932–38. http://dx.doi.org/10.4028/www.scientific.net/kem.523-524.932.

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In recent years, changes in plant equipment have been becoming more frequent because of the short lifetime of the products, and constructing 3D shape models of existing plants (as-built models) from large-scale laser scanned data is expected to make their rebuilding processes more efficient. However, the laser scanned data of the existing plant has massive points, captures tangled objects and includes a large amount of noises, so that the manual reconstruction of a 3D model is very time-consuming and costs a lot. Piping systems especially, account for the greatest proportion of plant equipment
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Ando, Yuto, and Hajime Kimura. "An Automatic Piping Algorithm including Elbows and Bends." Journal of the Japan Society of Naval Architects and Ocean Engineers 15 (2012): 219–26. http://dx.doi.org/10.2534/jjasnaoe.15.219.

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Chen, Walter, Kieu Anh Nguyen, and Yu-Chieh Huang. "Soil Erosion in Taiwan." Agriculture 13, no. 10 (2023): 1945. http://dx.doi.org/10.3390/agriculture13101945.

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Soil erosion is a complex process involving material detachment, transportation (mainly by water, occasionally by wind), and eventual deposition when energy wanes. Human activities like tillage and construction can exacerbate soil erosion. Various forms of water erosion, such as sheet erosion, pedestal erosion, rills, piping, and gullying, are recognized. This pioneering study aims to comprehensively model water erosion across Taiwan at a 20 m spatial resolution, a departure from previous research focusing on smaller scales. Using the Revised Universal Soil Loss Equation (RUSLE) model, it seek
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Lee, Eunyoung, and Heung Yeol Kim. "Experimental Study on the Fire Impact of Ceiling Insulation on CPVC Pipes." Journal of the Korean Society of Hazard Mitigation 24, no. 6 (2024): 203–11. https://doi.org/10.9798/kosham.2024.24.6.203.

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Fires igniting within a ceiling space often escalate into large-scale fires because of delayed detection times, rapid fire spread, and difficulties in firefighting operations. This study investigated the effect of combustible insulation materials on CPVC piping in sprinkler systems using real-scale fire experiments. Based on the top floor of an apartment, this study focused on insulation materials with the highest fire load among the combustibles in the ceiling space. A field survey and fire tests were conducted, and the experiments with EPS and XPS insulation revealed rapid flame spread and t
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Ishii, Mitsuo, Yoshikazu Ito, Masanari Yamamoto, Hiroaki Harada, and Michiko Iwasaki. "An Automatic Recognition System for Piping and Instrument Diagrams." Systems and Computers in Japan 20, no. 3 (2007): 32–46. http://dx.doi.org/10.1002/scj.4690200304.

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Kimura, Hajime. "Automatic Designing System for Piping and Instruments Arrangement including Branches of Pipes: Multi-objective Optimization of Piping." Journal of the Japan Society of Naval Architects and Ocean Engineers 14 (2011): 165–73. http://dx.doi.org/10.2534/jjasnaoe.14.165.

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Kawashima, Kazuaki, Satoshi Kanai, and Hiroaki Date. "As-built modeling of piping system from terrestrial laser-scanned point clouds using normal-based region growing." Journal of Computational Design and Engineering 1, no. 1 (2014): 13–26. http://dx.doi.org/10.7315/jcde.2014.002.

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Abstract Recently, renovations of plant equipment have been more frequent because of the shortened lifespans of the products, and as-built models from large-scale laser-scamied data is expected to streamline rebuilding processes. However, the laser-scanned data of an existing plant has an enormous amount ofpoints, captures inmcate objects, and includes a high noise level, so the manual reconstmction of a 3D model is very time-consuming and costly. Among plant equipment, piping systems account for the greatest proportion. Therefore, the purpose of this research was to propose an algorithm which
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