Exact(6)
Evaluating indoor daylight availability is extremely important in order to define the characteristics of an environment in terms of visual comfort and energy performances of lighting systems.
Objective: This paper presents a method for improving and evaluating indoor air quality by open window which make sure quantity of fresh air.
Based on the calculation results, a semi-experimental method was proposed for simply and approximately evaluating indoor acoustic spectra of fan-duct-plenum-room integrations, then an example was used to demonstrate the prediction process.
The results show that the indoor air temperature of the ancient halls under free-running conditions fluctuated between 22.52 and 29.46 °C in summer and between −8.91 and −2.64 °C in winter, meaning that the indoor environments are comfortable in summer but too cold in winter according to GB/T 50785-2012, whish is the Chinese standard for evaluating indoor thermal environments.
For example, in [67], this turns out to be particularly useful for evaluating indoor and outdoor coverage.
Additionally, while the type of stoves and heating used in households are often considered by health care providers who are evaluating indoor air quality risk factors in pediatric patients, additional questions relating to the presence of an exhaust fan may provide an opportunity for preventive intervention and improved outcomes.
Similar(54)
The produced airflow patterns are then used to evaluate indoor thermal comfort.
To fill this gap, this paper developed generic urban-scale coupled indoor and outdoor CFD models and proposes a new integrated index (CIOI index) to evaluate indoor natural ventilation potential, which couples both indoor and outdoor wind environments.
The produced airflows and temperature distributions were then used to evaluate indoor thermal comfort conditions in terms of the thermal comfort indices, i.e. the well-known predicted mean vote (PMV) index, its modifications especially for natural ventilation, predicted percent dissatisfied (PPD) index and Percent dissatisfied (PD) factor due to draft.
To develop millimeter-wave wireless LAN systems, however, we need to know the reflection and transmission characteristics in millimeter-wave bands so that we can evaluate indoor multipath propagation characteristics and the interactions of millimeter waves with various objects.
Additionally several studies that evaluate indoor exposure to NO2 with passive dosimeters in large cohorts observed similar findings [ 26, 27].
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