Mechanical Seal Efficiency Considerations for Pumps in Utilities: Economics of Seals vs. Packing, and Savings With Best Available Seal Flush Arrangements

Author(s):  
Richard Smith ◽  
Alan Roddis ◽  
Heinz P. Bloch

Applicable industrial standards for centrifugal pumps endorse several different sealing options as “best practice.” However, the overall acceptance of best practice techniques seems slow and is linked to the fact that sealing devices account for only a small fraction of the energy consumed by pumps. Yet, regardless of perception, significant energy conservation has been achieved by thoughtful sealing practices, as this paper will show. It will highlight case studies that provide guidance on issues of increasing technical and societal concerns relating to fluid emissions. Special attention will be directed to barrier fluid circulation devices used in dual mechanical seal arrangements as described by API-682 (Ref.1), a Standard widely used in the oil refining and petrochemical industries. The applicability of these ciculation devices to the Power Industry will be explained. Comparisons of three of the most widely used conventional integral flow induction/pumping ring devices will be made and the results of extensive testing presented. The paper and presentation also quantifies the value of advanced sealing technologies for pumps and highlights configurational differences between the newer and the more traditional (older) devices. Without exception, international utilities and power producers know that both energy and maintenance expenditures are affected by availability and reliability considerations relating to power generators and their turbine drivers. But feed water pumps and cooling water issues play their part as well. Consequently, a measure of attention has been given to “other big ticket items”, such as cooling tower losses and the like. However, there is compelling evidence that additional, less prominent or less obvious opportunities exist and that these can no longer be overlooked. Pump sealing falls into that category, although sealing devices and seal cooling account for only a small fraction of the energy consumed by pumps. In can be readily shown that significant energy savings have been achieved by thoughtful sealing practices. The general narrative and the implications conveyed by our case studies give visibility to the issues and provide guidance to the user.

Author(s):  
Maurice L. Adams ◽  
Michael L. Adams

This paper presents several recent case studies where the application of cutting-edge measurement and computer modeling have been successfully combined to correctly diagnose and fix power plant rotating machinery excessive vibration problems. These case studies include large turbogenerators and feed water pumps. Each case presented here shows an overall trouble-shooting strategy appropriate to the specific problem symptoms, and describes the measurement and computer modeling phases that successfully resolved the specific problem in each case.


2001 ◽  
Author(s):  
Richard M. Walker ◽  
Emma L. Jeanes ◽  
Robert O. Rowlands

<i>Managing Public Services Innovation</i> provides an in-depth exploration of innovation and its management in the housing association sector. Drawing on longitudinal case studies and data sets, it explores techniques to develop evidence-based policy in the housing association sector, and makes recommendations for best practice.


2011 ◽  
Vol 18 (3) ◽  
pp. 48-54 ◽  
Author(s):  
Andrzej Błaszczyk ◽  
Jerzy Głuch ◽  
Andrzej Gardzilewicz

Operating and economic conditions of cooling water control for marine steam turbine condensers The article presents the operational and economic analysis of controlling the cooling water flow in marine steam turbine power plants. The analysis bases on selected designs of the main condenser cooling water pumps and makes use of the results of investigations performed in inland power plants. Special attention was focused on marine aspects of the operation of those systems.


2021 ◽  
Vol 3 (1) ◽  
pp. 4-11
Author(s):  
Emma Fleck

Case studies are a common teaching and learning tool within entrepreneurship and its parent discipline, business, as a method of bringing the nuances of realism to complex theoretical problems. However, within the arts entrepreneurship field, they are used less frequently for pedagogical purposes and often with hesitation. Consequently, in this guide to the Case Study Edition, I aim to briefly: provide a rationale for using case studies in arts entrepreneurship education; illustrate what makes a good case study; highlight the mechanics of writing case studies by clearly outlining the expectations of a submission to JAEE for both traditional research cases and teaching cases; summarize the cases within this special issue and highlight why they demonstrate best practice example cases.


Author(s):  
Juan G. Cevallos ◽  
Frank Robinson ◽  
Avram Bar-Cohen ◽  
Hugh Bruck

Polymer heat exchangers (PHXs), using thermally-enhanced composites, constitute a “disruptive” thermal technology that can lead to significant water and energy savings in the thermoelectric energy sector. This paper reviews current trends in electricity generation, water use, and the inextricable relationship between the two trends in order to identify the possible role of PHXs in seawater cooling applications. The use of once-through seawater cooling as a replacement for freshwater recirculating systems is identified as a viable way to reduce the use of freshwater and to increase power plant efficiency. The widespread use of seawater as a coolant can be made possible by the favorable qualities of thermally-enhanced polymer composites: good corrosion resistance, higher thermal conductivities, higher strengths, low embodied energy and good manufacturability. The authors use several seawater cooling case studies to explore the potential water and energy savings made possible by the use of PHX technology. The results from three case studies suggest that heat exchangers made with thermally enhanced polymer composites require less energy input over their lifetime than corrosion resistant metals, which generally have much higher embodied energy than polymers and polymers composites. Also, the use of seawater can significantly reduce the use of freshwater as a coolant, given the inordinate amounts of water required for even a 1MW heat exchanger.


Water SA ◽  
2018 ◽  
Vol 44 (1 January) ◽  
Author(s):  
C Germishuizen ◽  
S Franzsen ◽  
H Grobler ◽  
GS Simate ◽  
CM Sheridan

Several technologies have been developed to treat acid mine drainage (AMD) and attention is shifting towards the removal of sulphate. The formation of ettringite, a hydrous calcium aluminium sulphate mineral, is an option to treat AMD and can reduce the sulphate concentration to well below the discharge specifications. The process modelled in this study includes the formation of ettringite and the recovery of gibbsite through the decomposition of recycled ettringite. The modelling of this process was done using PHREEQC and the results presented in this paper are based on the outcome of different case studies that investigated how the process is affected by a change in parameters. These include, changing the feed water pH, altering the split fractions in the hydrocyclone for the gibbsite recovery and varying the pH for ettringite formation.


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