ASHRAE Journal - October 2021 - 81

RESEARCH REPORT
1760-RP Update of Clothing Database for Existing and New
Western Clothing Ensembles, Including Effects of
Posture, Body and Air Movement
April 2018 - August 2021 (P); Loughborough University; Principal Investigator: George
Havenith; TC 2.1, Physiology and Human Environment,
To improve the clothing database, to provide data that are not presently
available for input into Standard 55 and other models, and to make these
standards and methodologies more accurate in their application to situations
where western attire is worn.
1762-RP Update the ASHRAE Design Guide for Combustion
Turbine Inlet Air Cooling Systems Published in 1999
January 2018 - August 2020 (P); Avalon Consulting; Principal Investigator: Dharam V. Punwani;
TC 1.10, Cogeneration Systems
The overall objective of the proposed project is to update the CTIC
Design Guide published in 1999. The specifi c objectives of the project
are to perform a thorough review of the literature and extract all relevant
information for updating the guide in the following areas: Include environmental
benefi ts of CTIC for reducing emissions of carbon and NOx for
power generation. Include information on several new commercially available
CTIC cooling technologies: indirect evaporative cooling, wet compression
and hybrid systems. Include quantitative CTIC design guidelines and a
performance tool for comparing the performance of various CTIC technologies.
Enhancement of the Economic Evaluation section, from the current
one-page qualitative description, to include a typical data sheet useful
for collecting the data needed for a better economic evaluation. Include a
new section for the selection and specifi cation of some of the important
and major components of CTIC systems: media for wetted media, cooling
coils for chiller systems, mist eliminators for all cooling technologies,
detrimental effects of non-uniform distribution of cooled air temperature
across the inlet area of compressors and methods for achieving acceptable
temperature distribution.
1767-URP Moist Air Transport Properties Research
July 1, 2016 - January 2021 (P); Kretzschmar Consulting Engineers, Principal Investigator:
Hans-Joachim Kretzschmar; TC 1.1 (Thermodynamics & Psychrometrics)
The objective is to make the ASHRAE technical literature and ASHRAE
Handbook of Fundamentals the most current and most accurate source of
data for the transport properties of the substances air, moist air, and water.
Therefore, new SI and IP Moist Air Property Tables Transport Properties of
Moist Air at Standard Atmospheric Pressure (101.325 kPa) for the ASHRAE
Handbook of Fundamentals, Psychrometrics Chapter will be prepared. The
new tables will contain values for viscosity, thermal conductivity, temperature
diffusivity, Prandtl number, and kinematic viscosity, as well as density
at atmospheric pressure in the temperature range of −70 to 300°C. This
incorporates the research of Lemmon and Jacobsen (2004) for dry air
viscosity and thermal conductivity, the International IAPWS standards on
the properties of H2O for viscosity and for thermal conductivity as well
as the latest International values for the Universal Gas Constant and the
Relative Molar Masses of H2O and the gases that make up dry air.
1769-RP Experimental Evaluation of the Efficiency of Belt
Drives for Fans
September 2018 - March 2021 (P); AMCA International Inc.; Principal Investigator: Mark
DeRoo; TC 5.1, Fans
The results of this research effort will provide tools to air system designers
to allow them to separate out the impacts of belt part-load effi ciency on
system effi ciency, to compare the effi ciency levels of belt- and direct-driven
fans, and to balance energy savings with other requirements used in the
fan system selection process
1771-RP Energy Modeling of Typical Commercial Buildings
in Support of ASHRAE Building Energy Quotient
Energy Rating Program
January 2018 - March 2021 (P); University of Colorado; Principal Investigator, Wangda Zuo;
bEQ, Building Energy Quotient Energy Rating Program; Co-sponsored: TC 7.6, Building Energy
Performance, TC 4.7, Energy Calculations
The overall objective of the proposed research is to reconcile the differences
between the empirical and modeled baselines for energy performance comparison
for new commercial building designs and existing commercial buildings, allowing
seamless translation of building energy performance metrics among LEED, Standard
90.1, Standard 189.1, Standard 100, and the bEQ As Designed and In Operation
ratings. The proposed research will contribute to a better understanding of the role
of neutral variables in building energy modeling predictions. The research will also
lead to consistency of energy performance metrics for Standard 90.1 (and LEED),
Standard 189.1, and Standard 100.
1778-RP Heat and Moisture Load from Commercial Dishroom
Appliances and Equipment
September 2018 - July 2020 (P); Frontier Energy; Principal Investigator; Rich Swierczyna; TC
5.10, Kitchen Ventilation
The scope of the project will include the measurement of the sensible
convective loads, latent loads and moisture to the space from dishroom
equipment and appliances. It will determine the exhaust airfl ows rates
necessary if applicable for capture and containment of the convective and
latent heat from dishroom equipment and appliances. The list of equipment
to be tested should include the 10 types below. They will produce approximately
18 different operating conditions. The seven pieces of equipment
listed in the Handbook of Fundamentals-Chapter 18 Table 5F Recommended
Rates of Radiant and Convective Heat Gain from Ware washing Equipment
during Idle Standby) or Washing Conditions do not need to be re-tested.
1780-RP Test method to Evaluate Cross-Contamination
April 2020 - June 2021; University of Saskatchewan; Principal Investigator: Carey Simonson,
P.Eng., Ph.D., FASHRAE, Professor; TC 9.10 Laboratory Systems; Co-sponsors: TC 2.3 & SSPC
621.1
O CTO B E R 2 0 2 1 ashrae.o rg ASHRAE JOURNAL
81
of Gaseous Contaminants Within Total Energy
Recovery Wheels
http://ashrae.org

ASHRAE Journal - October 2021

Table of Contents for the Digital Edition of ASHRAE Journal - October 2021

Contents
ASHRAE Journal - October 2021 - Intro
ASHRAE Journal - October 2021 - Cover1
ASHRAE Journal - October 2021 - Cover2
ASHRAE Journal - October 2021 - 1
ASHRAE Journal - October 2021 - Contents
ASHRAE Journal - October 2021 - 3
ASHRAE Journal - October 2021 - 4
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ASHRAE Journal - October 2021 - HR1
ASHRAE Journal - October 2021 - HR2
ASHRAE Journal - October 2021 - HR3
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ASHRAE Journal - October 2021 - HR8
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ASHRAE Journal - October 2021 - HR10
ASHRAE Journal - October 2021 - HR11
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ASHRAE Journal - October 2021 - Cover3
ASHRAE Journal - October 2021 - Cover4
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