Guofu just finished a 3-day AutoCAD training at University of Houston Downtown
Guofu Chen is a highly skilled and self-motivated Professional Chemical Engineer and Professional Mechanical Engineer as well with computer programming expertise. He has twenty-one (21) years of process and mechanical engineering experience (Aspen Plus, HYSYS, VMGSim, ProMax, ProTreat, EDR and HTRI) in oil & gas and power industry
Monday, August 12, 2019
Monday, May 13, 2019
Guofu is presenting a poster in Aspentech Optimize 2019 conference
Guofu is presenting a poster in Aspentech Optimize 2019 conference in Houston in May 2019. Come to the poster to check it out how Guofu utilizes Aspentech Optimizer to optimize capital cost, operational cost and revenue from products sold, for a RSV gas processing cryo plant.
Saturday, June 2, 2018
Guofu developed a method to find actual PSV choke pressure
Based on the easier two phase PRV method developed by Guofu, a new method is further developed to capture the actual PSV choke pressure for single phase, two phase, and super-critical conditions, instead of the ideal choke pressure. This presentation was delivered on DIERS meeting in Houston on 5/7/2018
Sunday, April 29, 2018
Guofu presented a paper on two-phase PRV on Global Congress of Process Safety conference
Guofu just presented and published a paper on two-phase PRV on Global Congress of Process Safety conference in Orlando. This newly proposed method generates identical results as API 520 Homogeneous Direct Integration (HDI) method, but it is much easier than API when it is put into practice by engineers.
Thursday, March 15, 2018
SIZING PRESSURE-RELIEF VALVES FOR TWO-PHASE FLOW
Guofu published a paper on "Chemical Engineering" Magazine. More details can be found at http://www.chemengonline.com/sizing-pressure-relief-valves-two-phases/.
Saturday, February 17, 2018
Properly Size Pressure-Relief Valves for Two-Phase Flow Easier than API 520 HDI Method without Integration
Old Method
API 520 Part I (9th edition) selected three (3) methods to size two-phase PRV. One of them is the HDI (Homogeneous Direct Integration) method described in section C.2.1. HDI method involves generating multiple data points over an isentropic range of pressure from the inlet to the discharge. These data are used to evaluate the mass flux integral by direct numerical integration.
New Easier Method
An easier HD (Homogeneous Direct) method without integration, yet producing identical mass flux, is presented. The HD (Homogeneous Direct) method compares the velocity of fluid and the velocity of sound along the isentropic expansion path. The choke point is determined when the velocity of fluid equals the velocity of sound. The mass flux is then simply calculated by multiplying mass density and the velocity of fluid at the choke point. A detailed example is given in the presentation. The HD method is compared against the established data in “Benchmarking of two-phase flow through safety relief valves and pipes” by Shawn Adair and Harold Fisher. The mass flow rate through a 4P6 relief valve by HD method is well within the reasonable range, among other established methods.
Monday, July 3, 2017
What does a true standard condensate stabilizer look like?
Do you really have a true standard plant?
Do you have a standard plant? Many of us probably say yes.
Do you really have a standard plant? Only some of us might say yes with hesitation.
Do you really have a true standard plant? Only very few of us will say yes with confidence.
The reason why you don't have a standard plant
The reason why only very few of us have a true standard plant is that making plants standard is really, really, really hard. Many of us fail to answer the ultimate question: what's the output with the customer's particular input if they decide to choose your standard plant? We know the performance and the utility requirement at the design conditions of the standard plant, but how about the off-design conditions with a given set of existing equipment? In this video, you will learn what a true standard condensate stabilizer looks like.
Saturday, June 24, 2017
Introduction to double-column Nitrogen Rejection Unit NRU
Introduction
It is estimated that 25% of the United States natural gas reserves contain unacceptably large quantities of nitrogen. Nitrogen is inert and lowers the BTU value of natural gas. It also takes up capacity in pipelines that could be used for valuable methane. Thus, nitrogen needs to be rejected from the gas through a Nitrogen Rejection Unit NRU. Typically, the feed to nitrogen rejection unit comes from the top of the DeMethanizer column of a cryogenic NGL recovery unit.Friday, April 22, 2016
Using Dynamic Simulation to Improve a PRICO LNG Liquefaction Plant Operation
Guofu delivered this presentation at 2016 AICHE Spring meeting in Houston
Monday, October 19, 2015
Geothermal Power Plants Modeling 101: Rigorous Rating
Geothermal Power Plants Modeling 101: Rigorous Rating
This blog is the first article in a series of Geothermal Power Plants Modeling. This 101 shows how a geothermal power plant is rigorously rated, thus the performance of the power plant can be guaranteed with great confidence.
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