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  • 00:00

    Some ventilation engineering controls are classified as general ventilation,

  • 00:10

    with the word "general" indicating that the entire workplace is ventilated.

  • 00:15

    The heating and cooling system used in your home is an example of a general ventilation system.

  • 00:22

    In a general ventilation system, relatively clean air, typically from outdoors is used to

  • 00:28

    dilute contaminants and move them out of the workplace.

  • 00:32

    General ventilation includes natural ventilation, which is essentially to "open a window".

  • 00:35

    General ventilation includes natural ventilation, which is essentially to "open a window".

  • 00:39

    This type of open-the-window ventilation was commonly used before air conditioning with heat generated in the factory causing natural

  • 00:49

    convection of outdoor air into the building, diluting contaminants and moving them out of the facility.

  • 00:57

    Many old factories were designed to have sloped roofs to encourage this natural convection.

  • 01:05

    General ventilation can also be achieved mechanically.

  • 01:09

    In the case shown at right, clean air is pushed into the building through ducts and discharged near the workplace floor.

  • 01:17

    This air is then pulled out of the building and exhausted through a stack.

  • 01:22

    Alternatively, this air can be cleaned and recirculated to reduce heating and cooling costs.

  • 01:32

    In contrast, local exhaust ventilation systems evacuate contaminated air at the source.

  • 01:41

    These systems can be very large, such as the multi-canopy hood system shown here.

  • 01:48

    Multiple hoods or enclosures are used to evacuate contaminated air where it is produced – or “local” to the source.

  • 01:58

    The contaminated air passes through connecting ductwork, an air cleaner, and is then exhausted outside the facility through a stack.

  • 02:09

    Air from a local exhaust ventilation system can be cleaned and then recirculated back into the

  • 02:15

    facility, but this practice should be restricted to contaminants of low toxicity. Air is moved through the system by a large industrial fan.

  • 02:29

    We will spend most of our time today on local exhaust ventilation systems because these

  • 02:35

    systems are most effective at reducing exposures in the workplace.

  • 02:42

    Local exhaust ventilation systems can also be small and self contained.

  • 02:51

    They have the same components as the larger system: a hood designed to evacuate the contaminant (in this case, from welding),

  • 03:01

    connecting ductwork to move the contaminant to an air cleaner, and, finally, the air cleaner and an air mover.

  • 03:11

    In this case, the filter and air mover are contained in a single housing.

  • 03:18

    Hoods are the entry point to the ventilation system. They have unique designs to serve a given operation or process.

  • 03:29

    For example, we show a canopy hood used to ventilate hot vapor from a dip tank.

  • 03:35

    Hoods are effective when operated at a specific airflow rate, commonly abbreviated with the

  • 03:42

    symbol Q and measured in the duct just downstream of the hood.

  • 03:50

    Connecting ductwork serves to transport the contaminant from the hood to the air cleaner.

  • 03:58

    Ductwork is sized to achieve a minimum transport velocity, symbolically represented with a capital V.

  • 04:06

    Minimum transport velocity depends on the type of material being conveyed.

  • 04:12

    Vapors and gases are easy to move, so transport velocity can be low relative to the high

  • 04:19

    transport velocities required to move heavy dusts, such as sand from casting metal.

  • 04:26

    I want to make sure that we don’t confuse airflow with velocity.

  • 04:30

    Airflow, Q, is equal to the velocity of air in the duct, V, times the cross-sectional area of the duct, A,

  • 04:40

    which can be written as Q equals V times A. Rearranging, we can express velocity as the airflow divided by area.

  • 04:53

    For a round duct, cross-sectional area is equal to pi over 4 times duct diameter squared.

  • 05:03

    So, the velocity in the duct can be expressed as 4 times airflow divided by pi times diameter squared.

  • 05:13

    This means that the airflow velocity in the duct can be adjusted by changing the diameter of the connecting ductwork,

  • 05:21

    and this is exactly what ventilation engineers do. They use the largest duct diameter

  • 05:28

    that provides the minimum transport velocity.

  • 05:31

    Higher velocities simply require more power and ultimately cost more money to operate.

  • 05:39

    Air cleaners serve, obviously, to clean the air. How well they clean the air depends on the purpose.

  • 05:48

    If the air is being exhausted outside, then they need to be designed to meet air pollution regulations.

  • 05:57

    Alternatively, they need to be effective enough to protect workers if the air is recirculated back into the facility.

  • 06:05

    Air cleaners also serve to protect the fan as some gases are highly corrosive and some particles can erode the fan blades.

  • 06:14

    There are many different types of air cleaners depending on the contaminant being cleaned. Spray towers are used to absorb gases.

  • 06:23

    Granular beds can be used to adsorb gases. Cyclones and bag filters are common air cleaners for particles.

  • 06:36

    I will spend some more time on hoods as they are the point of entry into a local exhaust ventilation system.

  • 06:47

    There is a wide variety of hoods available with the selection depending strongly on the operation being ventilated.

  • 06:56

    We will review hoods in the following three categories. Enclosing hoods completely or partially enclose the source of the contaminant.

  • 07:08

    Capturing hoods use the airflow of the exhaust system to reach out and capture the contaminant.

  • 07:15

    Receiving hoods are aligned with the energy of the source that helps them receive the contaminant.

  • 07:21

    We need a few terms introduced before starting. We've already introduced duct velocity, which, when multiplied by duct area, gives us airflow.

  • 07:36

    As shown at left, the source is fully or partially enclosed in an enclosing hood.

  • 07:42

    Typically, the face velocity is specified for these hoods to ensure the contaminants from the source do not enter the workplace.

  • 07:51

    As shown at right, the source is located outside of a capturing hood.

  • 07:58

    In this case, the velocity of the air at the source, referred to as the capture velocity,

  • 08:04

    must be sufficiently high to pull the contaminant into the hood.

  • 08:08

    Often times, capturing hoods use slots to ensure adequate capture velocity across a wide area.

  • 08:15

    If so, the velocity of air entering the slot (the slot velocity) and velocity downstream of the slot (the plenum velocity) are usually specified.

All

The example sentences of ALTERNATIVELY in videos (15 in total of 141)

help verb, base form you personal pronoun carry verb, non-3rd person singular present those determiner items verb, 3rd person singular present a determiner basket noun, singular or mass a determiner basket noun, singular or mass alternatively adverb if preposition or subordinating conjunction you personal pronoun have verb, non-3rd person singular present a determiner lot noun, singular or mass
alternatively adverb , this determiner air noun, singular or mass can modal be verb, base form cleaned verb, past participle and coordinating conjunction recirculated proper noun, singular to to reduce verb, base form heating noun, singular or mass and coordinating conjunction cooling noun, singular or mass costs noun, plural .
worldscale proper noun, singular points noun, plural or coordinating conjunction alternatively adverb may modal be verb, base form expressed verb, past participle in preposition or subordinating conjunction terms noun, plural of preposition or subordinating conjunction a determiner total adjective sum noun, singular or mass - normally adverb
sgrna proper noun, singular libraries noun, plural , or coordinating conjunction alternatively adverb scrolling verb, gerund or present participle to to the determiner bottom noun, singular or mass of preposition or subordinating conjunction the determiner page verb, base form you personal pronoun will modal find verb, base form our possessive pronoun
click noun, singular or mass the determiner white adjective tab noun, singular or mass up preposition or subordinating conjunction there adverb , alternatively adverb you personal pronoun can modal support verb, base form the determiner channel noun, singular or mass by preposition or subordinating conjunction buying verb, gerund or present participle coffee noun, singular or mass
alternatively adverb if preposition or subordinating conjunction you're proper noun, singular applying verb, gerund or present participle for preposition or subordinating conjunction a determiner scholarship noun, singular or mass do noun, singular or mass some determiner research noun, singular or mass on preposition or subordinating conjunction the determiner scholarship noun, singular or mass provider noun, singular or mass
alternatively adverb , it personal pronoun 's verb, 3rd person singular present possible adjective the determiner planet noun, singular or mass did verb, past tense n't adverb form verb, base form with preposition or subordinating conjunction hd proper noun, singular 106906 cardinal number at preposition or subordinating conjunction all determiner , but coordinating conjunction was verb, past tense captured verb, past participle
distribute verb, base form it personal pronoun all determiner it personal pronoun goes verb, 3rd person singular present to to me personal pronoun i personal pronoun made verb, past tense nine cardinal number hundred cardinal number grand adjective alternatively adverb i personal pronoun could modal
the determiner - this determiner one cardinal number 's possessive ending my possessive pronoun favorite adjective so adverb far adverb alternatively adverb if preposition or subordinating conjunction you personal pronoun prefer verb, non-3rd person singular present to to cook verb, base form at preposition or subordinating conjunction
alternatively adverb , you personal pronoun can modal book verb, base form one cardinal number of preposition or subordinating conjunction the determiner many adjective hotels noun, plural in preposition or subordinating conjunction the determiner city noun, singular or mass that determiner offer noun, singular or mass parking noun, singular or mass .
or coordinating conjunction alternatively adverb , you personal pronoun could modal get verb, base form a determiner converter noun, singular or mass box noun, singular or mass for preposition or subordinating conjunction the determiner antenna noun, singular or mass , which wh-determiner could modal also adverb output verb, base form
alternatively adverb , you personal pronoun can modal always adverb just adverb use noun, singular or mass shift proper noun, singular + noun, singular or mass click proper noun, singular like preposition or subordinating conjunction we personal pronoun talked verb, past tense about preposition or subordinating conjunction before adverb , which wh-determiner
alternatively adverb , if preposition or subordinating conjunction a determiner jobseeker proper noun, singular interviews noun, plural and coordinating conjunction doesn proper noun, singular t proper noun, singular get verb, non-3rd person singular present the determiner job noun, singular or mass proper noun, singular or coordinating conjunction decides verb, 3rd person singular present in preposition or subordinating conjunction a determiner
alternatively adverb , if preposition or subordinating conjunction you personal pronoun go verb, non-3rd person singular present into preposition or subordinating conjunction smart proper noun, singular convenience proper noun, singular section noun, singular or mass of preposition or subordinating conjunction the determiner settings noun, plural , then adverb gesture proper noun, singular & coordinating conjunction motion proper noun, singular ,
alternatively adverb alternatively adverb if preposition or subordinating conjunction it personal pronoun 's verb, 3rd person singular present a determiner spell noun, singular or mass or coordinating conjunction special adjective item noun, singular or mass like preposition or subordinating conjunction a determiner bunch noun, singular or mass of preposition or subordinating conjunction ball noun, singular or mass bearings noun, plural thrown verb, past participle in preposition or subordinating conjunction attempts noun, plural to to recreate verb, base form home noun, singular or mass alone adverb

Use "alternatively" in a sentence | "alternatively" example sentences

How to use "alternatively" in a sentence?

  • If nature had arranged that husbands and wives should have children alternatively, there would never be more than three in a family.
    -Laurence Housman-
  • Italy is definitely where I feel most at home, or alternatively, living in total wilderness, in the bush in Australia.
    -Noah Taylor-
  • The wretched Artist himself is alternatively the lowest worm that ever crawled when no fire is in him; or the loftiest God that ever sand when the fire is going.
    -Caitlin Thomas-

Definition and meaning of ALTERNATIVELY

What does "alternatively mean?"

/ôlˈtərnədivlē/

adverb
(Used when suggesting another choice).

What are synonyms of "alternatively"?
Some common synonyms of "alternatively" are:
  • or,
  • otherwise,
  • instead,
  • but,
  • alternately,

You can find detailed definitions of them on this page.