{"id":16951,"date":"2024-08-30T14:11:50","date_gmt":"2024-08-30T14:11:50","guid":{"rendered":"https:\/\/kanboapp.com\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/"},"modified":"2024-08-30T14:11:50","modified_gmt":"2024-08-30T14:11:50","slug":"revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment","status":"publish","type":"page","link":"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/","title":{"rendered":"Revolutionizing Energy Production: The Rise of Heavy-Duty Gas Turbines in New Power Unit Deployment"},"content":{"rendered":"<style> @media(min-width:1728px) { .tytulek{font-size:45px!important;margin-right:auto!important;margin-left:auto!important;max-width: 1200px!important;} .sekcja-tekst { margin-left: 40px!important; margin-right: 40px!important;} .artykul{margin-bottom:120px!important; 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margin-right: 16px!important;}  .artykul{margin-bottom:80px!important; margin-top:30px!important;} .menu-lewe a:hover { background:#E9F4FE!important; font-weight:600!important; font-size:16px!important; cursor:pointer!important; } .menu-lewe a { background:#FAFAFA; padding:10px 16px; border-radius: 10px; display: inline-block; outline: none; color:#0C3658!important; font-weight:600!important; font-size:16px!important; }  .kolumna-tekst{flex-basis:100%!important;} .naglowek-duzy {margin-bottom:40px!important; margin-top: 40px!important; font-size:25px!important; font-style:normal; font-weight:700!important; letter-spacing:-0.02em!important; line-height:1.2!important;} .naglowek-maly {margin-bottom:20px!important; font-size:16px!important; font-style:normal; font-weight:700!important; letter-spacing:-0.02em!important; line-height:1.2!important;} .naglowek-start {margin-bottom:40px!important; margin-top: 0px!important; font-size:19px!important; font-style:normal; font-weight:700!important; letter-spacing:-0.02em!important; line-height:1.2!important;} .tekst-para {font-size:16px!important;} .spis { display:none!important; } } .link a:hover { text-decoration:underline!important; } .banner { margin-top:80px; margin-bottom:80px; } .jazda { position:sticky!important; top: 185px; overflow: auto; max-height: 70vh; }  .fobrazek { margin-bottom: -40px!important; } .sekcja5-przycisk a:hover { background: linear-gradient(0deg, rgba(0, 0, 0, 0.15), rgba(0, 0, 0, 0.15)), #ED4B9E!important; }  .sekcja5-przycisk a:focus { background: linear-gradient(0deg, rgba(0, 0, 0, 0.15), rgba(0, 0, 0, 0.15)), #ED4B9E!important; } .vlp-layout-blogs .vlp-block-0 {font-weight: 600!important; } .ct-container-narrow {max-width: 1200px!important;}  <\/style><script> function lewemenu(zm) { var elements = document.getElementsByClassName(\"menu-lewe\"); var i,link1,link2; for (i = 0; i < elements.length; i++) {    link1 = elements[i].getElementsByTagName(\"a\");     link1[0].style.fontWeight = \"600\";     link1[0].style.backgroundColor= \"#FAFAFA\"; } link2 = elements[zm].getElementsByTagName(\"a\"); link2[0].style.fontWeight = \"600\"; link2[0].style.backgroundColor= \"#E9F4FE\"; } <\/script><div class=\"wp-block-getwid-section alignfull alignfull getwid-margin-top-none getwid-margin-bottom-none getwid-section-content-full-width\"><div class=\"wp-block-getwid-section__wrapper getwid-padding-top-none getwid-padding-bottom-none getwid-padding-left-none getwid-padding-right-none getwid-margin-left-none getwid-margin-right-none\" style=\"min-height:100vh\"><div class=\"wp-block-getwid-section__inner-wrapper\"><div class=\"wp-block-getwid-section__background-holder\"><div class=\"wp-block-getwid-section__background\"><\/div><div class=\"wp-block-getwid-section__foreground\"><\/div><\/div><div class=\"wp-block-getwid-section__content\"><div class=\"wp-block-getwid-section__inner-content\"><div class=\"wp-block-columns alignfull artykul is-layout-flex wp-container-core-columns-is-layout-f96e3eba wp-block-columns-is-layout-flex\" style=\"margin-top:0px;margin-bottom:0px\"><div class=\"wp-block-column paskek-lewy spis is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:270px\"><div class=\"wp-block-columns jazda is-layout-flex wp-container-core-columns-is-layout-995f960e wp-block-columns-is-layout-flex\"><div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\"><p class=\"has-text-align-left has-link-color wp-elements-ce7ce8fee1e672e130d03df3c959d2c6 wp-block-paragraph\" style=\"margin-left:10px;font-size:clamp(16.293px, 1.018rem + ((1vw - 3.2px) * 0.68), 25px);font-style:normal;font-weight:600;letter-spacing:-0.01em;line-height:1.2\">Table of Contents<\/p><p class=\"has-link-color wp-elements-0cb90eefbc59839fe95bc5e2301fa422 wp-block-paragraph\"><p class=\"menu-lewe has-link-color\" onclick=\"lewemenu(0)\"><a href=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section1\" data-type=\"URL\" data-id=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section1\"  style=\"font-size:clamp(14px, 0.875rem + ((1vw - 3.2px) * 0.391), 19px);font-style:normal;font-weight:600;line-height:1.2;color:#0c3658\">Introduction<\/a><\/p><\/p><p class=\"has-link-color wp-elements-59347d66268b60017adfa76449436b25 wp-block-paragraph\"><p class=\"menu-lewe has-link-color\" onclick=\"lewemenu(1)\"><a href=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section2\" data-type=\"URL\" data-id=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section2\"  style=\"font-size:clamp(14px, 0.875rem + ((1vw - 3.2px) * 0.391), 19px);font-style:normal;font-weight:600;line-height:1.2;color:#0c3658\">KanBo: When, Why and Where to deploy as a Process Management tool<\/a><\/p><\/p><p class=\"has-link-color wp-elements-9d1791c2b8202a1135b7f61dc81bb1c1 wp-block-paragraph\"><p class=\"menu-lewe has-link-color\" onclick=\"lewemenu(2)\"><a href=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section3\" data-type=\"URL\" data-id=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section3\"  style=\"font-size:clamp(14px, 0.875rem + ((1vw - 3.2px) * 0.391), 19px);font-style:normal;font-weight:600;line-height:1.2;color:#0c3658\">How to work with KanBo as a Process Management tool<\/a><\/p><\/p><p class=\"has-link-color wp-elements-20c5ccee4dc8185219dc780028c2cdae wp-block-paragraph\"><p class=\"menu-lewe has-link-color\" onclick=\"lewemenu(3)\"><a href=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section4\" data-type=\"URL\" data-id=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/#section4\"  style=\"font-size:clamp(14px, 0.875rem + ((1vw - 3.2px) * 0.391), 19px);font-style:normal;font-weight:600;line-height:1.2;color:#0c3658\">Glossary and terms<\/a><\/p><\/p><\/div><\/div><\/div><div class=\"wp-block-column kolumna-tekst is-layout-flow wp-block-column-is-layout-flow\"><div class=\"wp-block-getwid-section alignfull sekcja-tekst alignfull getwid-margin-top-none getwid-margin-bottom-none getwid-section-content-full-width\"><div class=\"wp-block-getwid-section__wrapper getwid-padding-top-none getwid-padding-bottom-none getwid-padding-left-none getwid-padding-right-none getwid-margin-left-none getwid-margin-right-none\" style=\"min-height:100vh\"><div class=\"wp-block-getwid-section__inner-wrapper\"><div class=\"wp-block-getwid-section__background-holder\"><div class=\"wp-block-getwid-section__background has-background\" style=\"background-color:#fafafa\"><\/div><div class=\"wp-block-getwid-section__foreground\"><\/div><\/div><div class=\"wp-block-getwid-section__content\"><div class=\"wp-block-getwid-section__inner-content\"><h1 class=\"wp-block-heading tytulek\" style=\"margin-bottom:40px;font-size:clamp(21.536px, 1.346rem + ((1vw - 3.2px) * 1.052), 35px);font-style:normal;font-weight:700;letter-spacing:-0.02em;line-height:1.2\">Revolutionizing Energy Production: The Rise of Heavy-Duty Gas Turbines in New Power Unit Deployment<\/h1><h2 class=\"wp-block-heading naglowek-duzy\" id=\"section1\" style=\"margin-bottom:40px;font-size:clamp(16.293px, 1.018rem + ((1vw - 3.2px) * 0.68), 25px);font-style:normal;font-weight:700;letter-spacing:-0.02em;line-height:1.2\">Introduction<\/h2><p class=\"tekst-para wp-block-paragraph\">Introduction:<\/p><p class=\"tekst-para wp-block-paragraph\">As a Continuous Improvement Process Leader, you are entrusted with the pivotal role of enhancing and refining the operational processes central to the project management organization. Process Management, within the context of your daily work, involves a rigorous and methodical approach to evaluating, standardizing, and optimizing the various procedures and policies that govern the execution of projects. The essence of process management lies in its focus on persistent performance enhancement through streamlined practices that are both efficient and effective.<\/p><p class=\"tekst-para wp-block-paragraph\">In your role, you will engage closely with an array of cross-functional stakeholders, drawing from their collective expertise to drive process innovation and enforce process discipline. Your responsibilities will extend across international divisions, embodying the role of a process ambassador who ensures the seamless integration and alignment of execution standards globally. Serving as the cornerstone of process excellence and governance, your mission is to forge systems and frameworks that bolster project management efficacy and contribute to the long-term success of the organization.<\/p><p class=\"tekst-para wp-block-paragraph\">Your role is not just to maintain the status quo, but rather to lead by example, championing continuous improvement initiatives that breed operational superiority. By doing so, you will be the architect of a dynamic environment where excellence is not an aspiration, but a standard.<\/p><h3 class=\"wp-block-heading naglowek-duzy\" id=\"section2\" style=\"margin-bottom:40px;font-size:clamp(16.293px, 1.018rem + ((1vw - 3.2px) * 0.68), 25px);font-style:normal;font-weight:700;letter-spacing:-0.02em;line-height:1.2\">KanBo: When, Why and Where to deploy as a Process Management tool<\/h3><p class=\"tekst-para wp-block-paragraph\">What is KanBo?<\/p><p class=\"tekst-para wp-block-paragraph\">KanBo is a process management platform designed to facilitate efficient work coordination and management within an organization. It provides a visual representation of work processes, task management, collaboration, and integration with Microsoft ecosystems, such as SharePoint, Teams, and Office 365.<\/p><p class=\"tekst-para wp-block-paragraph\">Why?<\/p><p class=\"tekst-para wp-block-paragraph\">KanBo offers an array of features that streamline workflows, enhance task visibility, and foster project accountability. It enables team collaboration with real-time updates, customizable workflows, hierarchical organization structure, and data management options suited to various compliance needs. This supports the creation of a transparent and efficient work environment.<\/p><p class=\"tekst-para wp-block-paragraph\">When?<\/p><p class=\"tekst-para wp-block-paragraph\">KanBo is suitable to be employed anytime an organization seeks to optimize its project management processes, needs to align team activities, desires enhanced workflow transparency, or requires better task and data management. It is particularly useful when managing complex projects with numerous moving parts, continuous operations, and when striving to reduce process waste and improve delivery times.<\/p><p class=\"tekst-para wp-block-paragraph\">Where?<\/p><p class=\"tekst-para wp-block-paragraph\">KanBo can be used in both on-premises and cloud-based environments, providing versatility for deployment based on an organization's specific data security, compliance, and collaboration requirements. It allows for remote work coordination and is thus applicable in diverse geographical locations and across various departments within an organization.<\/p><p class=\"tekst-para wp-block-paragraph\">Should a Continuous Improvement Process Leader use KanBo as a Process Management tool?<\/p><p class=\"tekst-para wp-block-paragraph\">Absolutely. A Continuous Improvement Process Leader should consider using KanBo as it aligns with the principles of continuous improvement by enabling the tracking and analysis of processes, identifying bottlenecks, and providing insights into areas for enhancement. Its hierarchical model helps in breaking down processes into manageable tasks, fostering incremental improvements. Moreover, features like card statistics, forecast charts, real-time activity streams, and integration capabilities support the leader in making data-driven decisions, promoting a culture of Kaizen, or continuous improvement, within the organization.<\/p><h3 class=\"wp-block-heading naglowek-duzy\" id=\"section3\" style=\"margin-bottom:40px;font-size:clamp(16.293px, 1.018rem + ((1vw - 3.2px) * 0.68), 25px);font-style:normal;font-weight:700;letter-spacing:-0.02em;line-height:1.2\">How to work with KanBo as a Process Management tool<\/h3><p class=\"tekst-para wp-block-paragraph\">As a Continuous Improvement Process Leader, using KanBo for process management entails leveraging its capabilities to achieve streamlined process optimization within the context of Heavy Duty Gas Turbines. Below are outlined steps to utilize KanBo effectively:<\/p><p class=\"tekst-para wp-block-paragraph\">1. Initial Workspace Setup<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Establish a dedicated KanBo workspace for processes related to Heavy Duty Gas Turbines.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: A workspace allows for centralization of all process-related tasks, fosters collaboration among team members, and keeps focus on the continuous improvement of these processes.<\/p><p class=\"tekst-para wp-block-paragraph\">2. Creating Focused Spaces<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Inside the workspace, create spaces for each major process or process area (e.g., Manufacturing, Supply Chain, Quality Control).<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Spaces provide structure, compartmentalizing processes for better manageability and allowing for focused workflows corresponding to distinct operational areas.<\/p><p class=\"tekst-para wp-block-paragraph\">3. Mapping out Workflows with Cards and Lists<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Utilize cards to represent individual process steps and lists to categorize different stages of the workflow.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: This visual mapping enables easy identification of process flow, identification of bottlenecks, and tracking of improvements.<\/p><p class=\"tekst-para wp-block-paragraph\">4. Applying Card Groupings and Filters for Analysis<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Group and filter cards based on status, duration, or custom parameters related to process efficiency and constraints.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Groupings and filters help you to quickly analyze process performance, identify areas needing attention, and make data-driven decisions.<\/p><p class=\"tekst-para wp-block-paragraph\">5. Implementing Process Measurement with Card Statistics<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Use card statistics to measure key performance indicators (KPIs) like cycle time, throughput, and process variation.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Quantitative data is crucial for validating process improvements and guiding further optimization efforts.<\/p><p class=\"tekst-para wp-block-paragraph\">6. Utilizing Date Dependencies for Workflow Coordination<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Leverage date dependencies feature to manage timelines and ensure tasks are completed in the correct sequence.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Proper timing and coordination of process steps are essential to maximizing efficiency and preventing delays.<\/p><p class=\"tekst-para wp-block-paragraph\">7. Setting up Gantt Chart Views for Project Visualization<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Utilize the Gantt Chart view to gain insights into the timeline and dependencies of various processes.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Gantt Charts provide a holistic overview of all process-related activities, allowing for better planning and resource allocation.<\/p><p class=\"tekst-para wp-block-paragraph\">8. Continuous Monitoring with Activity Streams<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Monitor real-time updates and history of changes in the Card Activity Stream.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Tracking the nuances and changes within each card ensures accountability and helps identify trends that could indicate the need for process adjustments.<\/p><p class=\"tekst-para wp-block-paragraph\">9. Conducting Regular Process Reviews<\/p><p class=\"tekst-para wp-block-paragraph\">   - Purpose: Schedule regular review meetings to assess the current state of the processes, using the KanBo space as a visual aid.<\/p><p class=\"tekst-para wp-block-paragraph\">   - Why: Continuous review is key to iterative improvement, ensuring processes remain aligned with strategic goals and adapting to new optimizations.<\/p><p class=\"tekst-para wp-block-paragraph\">10. Inviting Collaboration and Feedback<\/p><p class=\"tekst-para wp-block-paragraph\">    - Purpose: Encourage input and collaboration across functional teams by inviting stakeholders to contribute within the relevant KanBo space.<\/p><p class=\"tekst-para wp-block-paragraph\">    - Why: Cross-functional insights lead to a more comprehensive understanding of the process and can uncover improvement opportunities from different perspectives.<\/p><p class=\"tekst-para wp-block-paragraph\">11. Implementing and Tracking Continuous Improvement Initiatives<\/p><p class=\"tekst-para wp-block-paragraph\">    - Purpose: Use cards to manage and track continuous improvement projects within the processes.<\/p><p class=\"tekst-para wp-block-paragraph\">    - Why: A systematic approach to managing improvement actions ensures that initiatives are executed efficiently and evaluated for their effectiveness.<\/p><p class=\"tekst-para wp-block-paragraph\">12. Using the Forecast Chart View for Predictive Analysis<\/p><p class=\"tekst-para wp-block-paragraph\">    - Purpose: Apply the Forecast Chart view to predict future performance based on historical data.<\/p><p class=\"tekst-para wp-block-paragraph\">    - Why: Forecasting capability helps anticipate the outcomes of process changes and assists in prioritizing improvement efforts.<\/p><p class=\"tekst-para wp-block-paragraph\">By following these steps, you place yourself in a strong position to drive the continuous improvement process effectively, leveraging the full power of KanBo to optimize processes in a Business Context specifically directed at the operations of Heavy Duty Gas Turbines.<\/p><h3 class=\"wp-block-heading naglowek-duzy\" id=\"section4\" style=\"margin-bottom:40px;font-size:clamp(16.293px, 1.018rem + ((1vw - 3.2px) * 0.68), 25px);font-style:normal;font-weight:700;letter-spacing:-0.02em;line-height:1.2\">Glossary and terms<\/h3><p class=\"tekst-para wp-block-paragraph\">Certainly! Here's a glossary of terms related to Heavy Duty Gas Turbines in the context of Gas Power New Units:<\/p><p class=\"tekst-para wp-block-paragraph\">Combustion<\/p><p class=\"tekst-para wp-block-paragraph\">The process of burning fuel within the gas turbine to produce heat, which is converted into mechanical energy.<\/p><p class=\"tekst-para wp-block-paragraph\">Compressor<\/p><p class=\"tekst-para wp-block-paragraph\">A mechanical device that increases the pressure of air or gas by reducing its volume, typically used in a gas turbine engine to supply air for the combustion process.<\/p><p class=\"tekst-para wp-block-paragraph\">Exhaust<\/p><p class=\"tekst-para wp-block-paragraph\">The release of used gases from the engine after the energy has been extracted during the combustion process.<\/p><p class=\"tekst-para wp-block-paragraph\">Turndown Ratio<\/p><p class=\"tekst-para wp-block-paragraph\">The ratio of the maximum to the minimum output of a gas turbine, indicating the flexibility of the engine to operate efficiently over a range of conditions.<\/p><p class=\"tekst-para wp-block-paragraph\">Hot Section<\/p><p class=\"tekst-para wp-block-paragraph\">The part of the gas turbine where the highest temperatures are found, including the combustion chamber and first stages of the turbine.<\/p><p class=\"tekst-para wp-block-paragraph\">Inlet Guide Vanes (IGV)<\/p><p class=\"tekst-para wp-block-paragraph\">Adjustable vanes that direct airflow into the compressor at an optimal angle to control mass flow and compressor performance.<\/p><p class=\"tekst-para wp-block-paragraph\">Load<\/p><p class=\"tekst-para wp-block-paragraph\">The demand for power or the amount of work that a power-producing unit such as a gas turbine is required to generate.<\/p><p class=\"tekst-para wp-block-paragraph\">Nominal Capacity<\/p><p class=\"tekst-para wp-block-paragraph\">The expected maximum continuous output of a gas turbine under specified conditions.<\/p><p class=\"tekst-para wp-block-paragraph\">Open Cycle<\/p><p class=\"tekst-para wp-block-paragraph\">A type of gas turbine system where air is taken in from the atmosphere, compressed, mixed with fuel, combusted, and then exhausted to the atmosphere without additional energy recovery.<\/p><p class=\"tekst-para wp-block-paragraph\">Combined Cycle<\/p><p class=\"tekst-para wp-block-paragraph\">A gas turbine system in which the exhaust heat is used to generate steam for a steam turbine, significantly increasing the efficiency of power generation.<\/p><p class=\"tekst-para wp-block-paragraph\">Peaker Plant<\/p><p class=\"tekst-para wp-block-paragraph\">A power plant that operates only during periods of high demand, often utilizing gas turbines due to their ability to quickly start up and shut down.<\/p><p class=\"tekst-para wp-block-paragraph\">Simple Cycle Efficiency<\/p><p class=\"tekst-para wp-block-paragraph\">The efficiency of a gas turbine operating in an open cycle, without the additional steam cycle.<\/p><p class=\"tekst-para wp-block-paragraph\">Single Shaft Gas Turbine<\/p><p class=\"tekst-para wp-block-paragraph\">A design where the compressor, combustion, and turbine sections are all connected along a single rotor axis.<\/p><p class=\"tekst-para wp-block-paragraph\">Surge<\/p><p class=\"tekst-para wp-block-paragraph\">A condition in the compressor where airflow reverses direction, which can lead to a rapid decrease in output and potential damage to the gas turbine.<\/p><p class=\"tekst-para wp-block-paragraph\">Turbine Section<\/p><p class=\"tekst-para wp-block-paragraph\">The part of the gas turbine where the expanding gases produced by combustion are used to drive the turbine blades, creating mechanical energy.<\/p><p class=\"tekst-para wp-block-paragraph\">Variable-Area Turbine Nozzles (VATN)<\/p><p class=\"tekst-para wp-block-paragraph\">Turbine nozzles whose area can be varied to control the flow of gases through the turbine, thereby adjusting its performance.<\/p><p class=\"tekst-para wp-block-paragraph\">Wet Low Emissions (WLE)<\/p><p class=\"tekst-para wp-block-paragraph\">A method of reducing emissions in a gas turbine by injecting water or steam into the combustion process to lower flame temperatures and decrease NOx formation.<\/p><div style=\"height:120px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div><\/div><\/div><\/div><\/div><\/div><\/div><div class=\"wp-block-column paskek-prawy spis is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:270px\"><div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-995f960e wp-block-columns-is-layout-flex\"><div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"padding-left:16px\"><\/div><\/div><\/div><\/div><\/div><\/div><\/div><\/div><\/div>","protected":false},"excerpt":{"rendered":"","protected":false},"author":2,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-16951","page","type-page","status-publish","hentry"],"blocksy_meta":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.6 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\r\n<title>Revolutionizing Energy Production: The Rise of Heavy-Duty Gas Turbines in New Power Unit Deployment - KanBo<\/title>\r\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\r\n<link rel=\"canonical\" href=\"https:\/\/kanboapp.com\/en\/revolutionizing-energy-production-the-rise-of-heavy-duty-gas-turbines-in-new-power-unit-deployment\/\" \/>\r\n<meta property=\"og:locale\" content=\"en_US\" \/>\r\n<meta 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