debottlenecking of heat exchanger networks with fixed pressure drops (l.targeting)

Authors

دکتر محمد حسن پنجه شاهی

مهندس مهران غفوریان صدیق

abstract

retrofit of heat exchanger networks for energy saving and/or debottlenecking is one of important aspects of process engineering. pinch technology, as the most efficient tool for the analysis of these networks, has been applied to hundreds of such projects and shown satisfactory results. however, all the existing methods for debottlenecking, using pinch technology, are either based on assumed heat transfer coefficients or corrected ones on the bas is of revised conditions. this usually causes problems in the plant hydro dynamic system, when pressure drop constraints are present. in this paper the new area algorithm, which is based on fixed stream pressure drops and has previously been used in energy saving retrofits, is incorporated into de bottlenecking procedure and a new targeting method is introduced. the method is then applied to a crude oil distillation unit , with 20% increase in throughput, and the results are discussed.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

debottlenecking of heat exchanger networks with fixed pressure drops (ii) design.

debottlenecking of heat exchanger networks is a very important issue, when a plant is subject to process changes and/or increased throughput. in previous paper, a new targetting method was introduced, that allowed the designer to consider hydrodynamic constraints when debottlenecking a network. in this paper, a design procedure, which guarantees the consistency of the results of targetting stag...

full text

Area Energy and Throughput Targeting in Debottlenecking of Heat Exchanger Networks with Decomposition Approach

For energy saving retrofit projects, its economics are usually evaluated in terms of capital investment and payback time. The capital investment is in direct relation to the total heat recovery area of the network and the payback time factor is base on both the area and the energy savings. The debottlenecking is an increased throughput, which can be profitable in economic sense. The combination...

full text

area energy and throughput targeting in debottlenecking of heat exchanger networks with decomposition approach

for energy saving retrofit projects, its economics are usually evaluated in terms of capital investment and payback time. the capital investment is in direct relation to the total heat recovery area of the network and the payback time factor is base on both the area and the energy savings. the debottlenecking is an increased throughput, which can be profitable in economic sense. the combination...

full text

MINLP synthesis of heat exchanger networks considering pressure drop effects

Considerable research effort has been reported in both Pinch Technology and MINLP techniques for the synthesis of heat exchanger networks. However, most of the design procedures assume constant stream heat transfer coefficients. A problem arises because there is no guarantee that the values of the coefficients assumed during network synthesis are the same as those actually achieved in detailed ...

full text

Generalization of Decomposed Integration Methods for Cost Effective Heat Exchanger Networks with Multiple Cost Laws

At many circumstances, in heat exchange processes several exchangers were used with different cost laws due to their pressure ratings, materials of construction and exchange3r types. In such circumstances traditional methods of pinch technology can not be led to minimum total annual cost may cause some other disadvantages like more complexity or higher maintenance. In this research work a n...

full text

numerical investigation of heat transfer and pressure drop in a plate heat exchanger with chevron plates

in the present study, turbulent flow in channels of a plate heat exchanger with corrugated chevron plates has been simulated numerically using the commercial cfd package, fluent. unstructured mesh is used for discretizing the computational domain and simple algorithm is utilized to solve the pressure and velocity equations. there is a wide selection of different plate heat exchangers within the...

full text

My Resources

Save resource for easier access later


Journal title:
نشریه دانشکده فنی

جلد ۵۷، شماره ۰۵، صفحات ۰-۰

Keywords

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023