Design, Functionality and Applications of Water Chiller Variant

Notice

This is an unedited manuscript accepted for publication and provided as an Article in Press for early access at the author’s request. The article will undergo copyediting, typesetting, and galley proof review before final publication. Please be aware that errors may be identified during production that could affect the content. All legal disclaimers of the journal apply.

Year : 2024 | Volume :11 | Issue : 03 | Page : –
By
vector

Shraddha Pandhe,

vector

Bhakti Kadam,

vector

Kishor P. Jadhav,

vector

Pradip B. Vyavhare,

vector

Arjun R. Masal,

vector

Rahul K. Shinde,

  1. Student, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, India
  2. Assistant Professor, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, India
  3. Student, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, India
  4. Student, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, India
  5. Student, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, India
  6. Student, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, India

Abstract document.addEventListener(‘DOMContentLoaded’,function(){frmFrontForm.scrollToID(‘frm_container_abs_109314’);});Edit Abstract & Keyword

This research paper provides a thorough examination of water chillers, focusing on their design, functionality, and diverse applications. By analysing different types of chillers, their operational mechanisms, and specific uses across industries, this study aims to enhance understanding and offer insights into the selection and implementation of water chillers in various setting. Alternative Water Chiller Panels are employed in cooling systems to regulate the water chiller’s functioning. Actuators, temperature sensors, flow meters, VFDs, and chiller control units are among their features. Through temperature and flow rate regulation, the panels provide effective cooling, resulting in energy savings and dependable operation. Future developments might include cutting-edge sensor technologies and AI-driven optimization for increased efficiency. This report presents a detailed account of the focusing on control panels essential to industrial automation. This abstract provides a broad overview of panel type, highlighting their components, construction, operational principles, advantages, and prospects. Control Panel Production involves the creation of panels that manage and control various electrical systems within industrial environments. Key components include enclosures, circuit breakers, contactors, relays, PLCs, HMIs, PSUs, and wiring. These panels provide centralized management, increased security, and adaptable options for a range of uses. Future advancements are anticipated in IoT integration and smart technologies, promising improved efficiency and functionality.

Keywords: Water Chiller, Design of Water Chillers, PSUs, PLCs, VFDs, Actuators

[This article belongs to Recent Trends in Fluid Mechanics (rtfm)]

How to cite this article:
Shraddha Pandhe, Bhakti Kadam, Kishor P. Jadhav, Pradip B. Vyavhare, Arjun R. Masal, Rahul K. Shinde. Design, Functionality and Applications of Water Chiller Variant. Recent Trends in Fluid Mechanics. 2024; 11(03):-.
How to cite this URL:
Shraddha Pandhe, Bhakti Kadam, Kishor P. Jadhav, Pradip B. Vyavhare, Arjun R. Masal, Rahul K. Shinde. Design, Functionality and Applications of Water Chiller Variant. Recent Trends in Fluid Mechanics. 2024; 11(03):-. Available from: https://journals.stmjournals.com/rtfm/article=2024/view=0

Full Text PDF

References
document.addEventListener(‘DOMContentLoaded’,function(){frmFrontForm.scrollToID(‘frm_container_ref_109314’);});Edit

Patrick DR, Fardo SW, Fardo BW. Electrical power systems technology. River Publishers; 2022 Jun 1. [2] Bartelt TL. Industrial control electronics: devices, systems, and applications. (No Title). 2002 Jan. [3] Von Meier A. Electric power systems: a conceptual introduction. John Wiley & Sons; 2024 Aug 7. [4] Paul M. Anderson; A. A. Fouad. Power System Control and Stability. 2003. 2nd Ed. Wiley–Blackwell. Hoboken, New Jersey. US. [5]. Ellis G. Control system design guide: using your computer to understand and diagnose feedback controllers. Butterworth-Heinemann; 2012 Jun 27. [6] Khandekar Nagnath Vyankati, Kishor. P. Jadhav, Avinash A. Suryagan. Motor protection from theft report by using Artificial intelligence GSM Technology. International Journal of Advance Research and Innovative Ideas in Education. 2023; 9(6). 16.0415/IJARIIE-22064 [7] JADHAV MK, SHRAVANKUMAR MA. Simulation of Starting of an Induction Motor Driven by a Modular Multilevel Cascade Inverter Without Speed Sensor. JournalNX. 2017 Feb;3(02):17-24. [8] Kishor Jadhav, Hanamant Mallad. Open-Circuit Fault Diagnosis in VSI by Simple Direct Current Method. Proceedings of “National Conference on Recent Trends in Science and Advances in Engineering”, International Journal of Innovations in Engineering Research and Technology [IJIERT] Organized by Fabtech Technical Campus, College of Engineering & Research, Sangola. 193-199. [9] Kishor p. Jadhav, Abhinav P Mule, Tejas S Kulkarni, Daulat B Mali. ‘Solar Spin: BLDC Motor Integration for Sun powered Cycling”. Journal of Alternate Energy Sources & Technologies (joaest) 15 (2): 30-36. [10] God SP, Tekale A, Mallareddy C. Control Scheme Based on Quasi Z-Source Network for Four Switch BLDC Motor. International Journal Research and Development 5.7 (2017): 461. 2017;464. [11] Tekale A, God S. Charge Pump Circuit Based Grid-Tied PV System for Single Phase Transformer Less Inverter Using Fuzzy Logic Controller. InTechno-Societal 2020: Proceedings of the 3rd International Conference on Advanced Technologies for Societal Applications—Volume 2 2021 Jun 20 (pp. 79-85). Cham: Springer International Publishing. [12] Omkar Deshmukh, Akshay Nikam, Tejas Sankpal, Indrajeet Katkar, Prof. S. Nadaf. Automatic Fault Detection and Protection System of 3 Phase Induction Motor Against Abnormal Condition. International Research Journal of Modernization in Engineering Technology and Science. 2023; June 2023; 5(6): 2189-2195. https://www.irjmets.com/uploadedfiles/paper//issue_2_february_2023/33523/final/fin_irjmets1678173765.pdf [13] Goel M, Picciani RG, Lee RK, Bhattacharya SK. Aqueous humor dynamics: a review. The open ophthalmology journal. 2010;4:52.. [14] Dey S, Deka N, Hazarika D. Power system planning for reduction in system losses using STATCOM and PSO technique. Journal of The Institution of Engineers (India): Series B. 2022 Aug;103(4):1269-81. [15] Patel SM, Freeman PT, Wagner JR. An electrical microgrid: integration of solar panels, compressed air storage, and a micro-cap gas turbine. InDynamic Systems and Control Conference 2014 Oct 22 (Vol. 46193, p. V002T22A003). American Society of Mechanical Engineers


Regular Issue Subscription Review Article
Volume 11
Issue 03
Received 20/08/2024
Accepted 27/08/2024
Published 24/10/2024

function myFunction2() {
var x = document.getElementById(“browsefigure”);
if (x.style.display === “block”) {
x.style.display = “none”;
}
else { x.style.display = “Block”; }
}
document.querySelector(“.prevBtn”).addEventListener(“click”, () => {
changeSlides(-1);
});
document.querySelector(“.nextBtn”).addEventListener(“click”, () => {
changeSlides(1);
});
var slideIndex = 1;
showSlides(slideIndex);
function changeSlides(n) {
showSlides((slideIndex += n));
}
function currentSlide(n) {
showSlides((slideIndex = n));
}
function showSlides(n) {
var i;
var slides = document.getElementsByClassName(“Slide”);
var dots = document.getElementsByClassName(“Navdot”);
if (n > slides.length) { slideIndex = 1; }
if (n (item.style.display = “none”));
Array.from(dots).forEach(
item => (item.className = item.className.replace(” selected”, “”))
);
slides[slideIndex – 1].style.display = “block”;
dots[slideIndex – 1].className += ” selected”;
}