Archive for category Product Applications

St. Mary Magdalen Worship Center – Kerfed panels to fit curved walls!

The Mary Magdalen Mission Center has an oval-shaped sanctuary that was experiencing extremely poor speech and music clarity. Their Worship services are traditional leaning (spoken word, piano and congregational singing) with the occasional contemporary music service.  

Parabolic Focusing – A primary feature of the sanctuary are 4 large curved walls (two at the front and two at the rear). Concave, uniform, curved surfaces are very problematic in room acoustics. Curved surfaces “focus” sound reflections to a point, akin to a magnifying glass focusing light passing through the curved lens.

If you’ve ever stood in the center of dome, you’ve probably experienced a few interesting acoustic anomalies. First is the “whisper” effect, where sound produced near the foci of the dome/curve, is amplified, allowing a faint whisper to be heard throughout the room (and conversely, all the sound produced in the room focused to this point, causing a cacophony of reflections at the center foci) . Another is the “creep” effect, where sound produced at the edge of arc, travels along the curved surface, losing little energy until it reaches the opposite end of the arc.

Not only do the hard wall and floor surfaces of the Mary Magdalen Mission Center contribute to excessive sound buildup, but the parabolic focusing from the curved wall surfaces caused extreme comb filtering (pockets of destructive and constructive interference as a result of overlapping waves), exacerbating intelligibility issues.  These conditions contribute to an acoustically uncomfortable environment in which music is hard to perform and enjoy while speech is also difficult to understand.

To significantly reduce excessive reverberation and destructive reflections, we recommended installing approx. 1200 SQFT of 2” back-scored Hi Impact Sonora Wall Panels across the rear wall surfaces. We specified kerfed/back-scored Hi Impact Sonora Wall Panels that can “bend” to fit curved surfaces and come with a high-density adder that improves acoustic performance and durability. View Sonora Panel information on our website.

https://www.acousticsfirst.com/sonora-wall-panels.htm

Reverb Predictions – Worship spaces of this size with a blend of traditional and contemporary music should have a reverb time below 1.6s. We entered the room’s dimensions and construction materials and made a prediction of reverb times before and after treatment. In addition to controlling distracting echoes and comb filtering, installing approx. 1248 SQFT of 2” Hi Impact Sonora wall panels across the rear wall reduced reverberation by approx. 35%, significantly improving speech intelligibility and music clarity.

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Sonora® Wave Clouds

One of the more recent additions to our line of sound absorbing ceiling treatments is the Sonora Wave Cloud. This product can be an ideal choice for architects and specifiers who may be exploring options for large spaces which may require more expansive acoustic treatment while maintaining a certain design aesthetic. The curved shape of the Sonora® Wave Clouds allow for an impressive and unique look, while also providing optimal sound control. Sonora® Wave Clouds are available fabric wrapped or custom painted, with a 132″ radius bend in either a convex or concave profile. This allows for the creation of long waves – hence the name.

For this Job, Acoustics First® worked with Ferrari & Sons to provide the acoustic treatment for an auditorium in the Webutuck Central School District in Amenia, NY. As you can see, the end results turned out great!

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St. Andrew by the Bay – Custom HiPer® Impact Panels to absorb and diffuse sound!

St. Andrew by the Bay is a traditional worship facility with a focus on spoken word worship and congregational singing. The large volume and hard surfaces in this space are the physical features most at fault for excessive reverberation, comb filtering and distracting “slap” echoes (discrete sound reflections usually caused by a distant, reflective back-wall). 

To correct the slap-back and curb excessive reverb without “over deadening” the space, we recommend distributing approx. 550 SQFT 1” HiPer® Impact absorber/diffuser panels throughout the rear wall areas (see attached layout).  HiPer® Impact panels absorb low frequencies and diffuse high-frequencies, yielding a much more even room response. In addition to controlling bass buildup, the high-frequency scattering will help retain some “life” in the room for acoustic and choral performances.  

Reverb Prediction – Historically, churches relied on an abundance of hard surfaces to propagate sound to the rear of the nave, so they benefited from very long reverb times (upwards of 4-5s). Modern sound systems allow for a much more focused sound and equitable listening environment , so these extreme reverb tails are no longer necessary and can actually degrade the experience of the congregation. Churches of this size with a sound system and traditional worship services should have a reverb time somewhere in the 1.5-2.25s range. We entered the sanctuary’s dimensions and construction materials into our acoustic calculator and made a prediction of reverb times before and after treatment.

From Lee Hartman & Sons who performed the install “Here are some photos of the finished panels at St. Andrew by the Bay. It turned out great and client is very happy. Many thanks to Cameron for the detailed layout.”

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Before & After: Video Conference Room

AMC Technology is located in a 5,400 square-foot suite that features a large open office area, a break room as well as several conference rooms.

When Acoustics First® initially met with the AMC team, they had recently moved into the space and were experiencing a number of acoustic problems in the open office area. Although Acoustics First® originally provided recommendations to improve workstation isolation in the open office, once the employees settled into the space, call-clarity issues in the conference rooms had become the much larger concern.

Three of the conference rooms were rudimentarily treated with 1” sound absorbing panels. The other four conference rooms were not treated acoustically and had hard/reflective walls, floors and ceilings. These hard surfaces were most at fault for excessive reverberation, noise buildup and distracting flutter-echoes (“ringing” caused by parallel reflective surfaces). These conditions contributed to an acoustically uncomfortable environment in which speech was hard to understand and conference call clarity suffered.

AMC Technology’s CTO, Anthony Uliano, identified a few goals for potential acoustic remediation. Anthony often works remotely and will call into the conference rooms to talk with team members. The sound of these calls on his side was frequently distorted and individual team members were difficult to understand. Anthony was concerned that clients were experiencing the same intelligibility issues. The primary goal for acoustic treatment was to improve the clarity of conference calls by reducing echoes and excessive reverberation within each conference room. Anthony also mentioned that they were experiencing some isolation problems. Though not a high priority, steps to reduce sound transmission were detailed for future consideration.

Acoustics First® specified Sonora® wall and ceiling treatment within each conference room to control flutter echoes and reduce reverberation down to suitable levels for conference calls. The video below provides a great snapshot of how the room sounded before and after treatment. Each recording is done in the same room, with the same employee and sitting the same distance from the microphone. The end result is a much clearer and intelligible conversation.    

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Project: Dogfish Head Brewing & Eats + Reading a Spectrogram

Dogfish Head Brewing & Eats is a brewery, restaurant and performance venue located in Rehoboth Beach, DE.  This largely reflective space has a wood ceiling, an un-polished concrete floor and walls comprised of drywall, unfinished wood planks (over OSB) and glass. These hard surfaces promote reverberation and early reflections, resulting in a noisy and “muddy” sounding environment.

Acoustics First and Integrity Sound Solutions were brought in to provide solutions to remediate noise level and clarity issues.

The co-owners of Dogfish Head Brewing & Eats and their house engineer identified a few goals for acoustic treatment…

  1. Reduce “background” noise as levels in excess of 85dBa were common on busy nights. Under these conditions, the sound engineer would push the sound system above 95dBA to maintain music intelligibility. This results in an acoustically uncomfortable environment for patrons and wait staff (which in turn elevate their voices to be heard, further exacerbating noise level issues).
  2. Control excessive reverberation and latent reflections to improve live-music clarity.
  3. Minimize visually obtrusive acoustic treatment, particularly on the main wood ceiling.

Acoustics First recorded numerous sine sweeps using the house system (JBL line array and subs) and a calibrated Zoom H4 recorder as the receiver. The sweep was recorded from a number of positions (in front of stage, main dining area, in front of the bar and from the mezzanine level). The following charts are spectrograms of two of these sweeps. Spectrograms are a visual way of representing sound intensity (volume) across a range of frequencies. We can observe how energy levels compare between frequencies and see the response of the speakers and the room at these frequencies over time. 

The spectrograms of the sine sweeps show that the house system is very good at producing the full spectrum of frequencies, which gave us more confidence in our analysis.

Reading the Spectrogram – The thickest sweep line (furthest right) is the direct speaker output and the thinner sweep lines are harmonic resonances of the speakers; you’ll notice these bands get further apart as we move up in frequency. The thickness of the sweep, showing sound intensity over time, represents the extent of early reflections. For example, a sweep recorded in an anechoic chamber would have very tight lines. 

The first 6dB of early reflections are the most distracting because of their intensity. Reflections arrive slightly late, but at the same frequency, create a “smear” of sound. The faster they decay (<100ms) the more focus you have on the direct source.  As you can see, low and mid frequencies stay extremely elevated for the entire 100ms, resulting in a muddy, undefined sound.

Reverberation Time – Measurement & Analysis:

Reverberation Time (RT60) is a metric that is defined as the time it takes for sound to decay 60 decibels (dB) in a room. This is a very important metric for medium-to-large room acoustics as it dictates how well a room will perform for speech and music applications. Generally, a large room with abundant hard surfaces will have a long reverb time. Surfaces that have sound absorptive qualities, like carpet and acoustic panels, reduce reverberation.

Bars/restaurants of this size with live music should have a reverberation time below 1.2s, ideally in the .6-.8s range for “high-intensity” performances, like Rock, Hip Hop or Electronic Dance Music. 

We recorded a balloon pop and the subsequent reverb tail and calculated the reverb time based on the decay rate. The results were as follows.

RT60 measurement of 1.656s was recorded at the center of the room. Although this measurement is shorter than initially expected, it is still excessive given the use of the space. 

Reverb Prediction:

We entered the dimensions, construction materials and furnishings of the restaurant into our acoustic calculator and made a prediction of reverb times before and after treatment. The modeled “existing” reverberation time and the measured RT60 results we took on-site were very close @ 2000Hz, which gives us confidence in the acoustical model. This means we can add acoustical treatment to the model and accurately predict the results before any changes are made to the actual room and it shows how much improvement you can expect from the recommended treatment.

As you can see, the treated result in the model is within our target RT60 (.6-1.2s) for amplified live-music, resulting in a more suitable performance environment. This treatment would also significantly reduce noise buildup (in a well-treated room, customers and staff will not feel like they have to shout to be heard), further helping control noise levels.

To minimize the amount of visually noticeable treatment, Acoustics First specified fabric wrapped Sonora Panels (http://acousticsfirst.com/sonora-wall-panels.htm) and factory-painted Tone Tiles panels ( https://www.acousticsfirst.com/acoustic-tone-tile-panels.htm) to match the exact wall color. Acoustics First also recommend Sonora Blackboard  https://www.acousticsfirst.com/sonora-black-board.htm  to “fit” within the metal beams.

Most of the sound absorptive treatment was broad-band in nature. However, Low-Frequency Control (LFC) panels were utilized on the stage wall (behind the line array) to combat the early bass reflections that degrade low-frequency definition. LFC panels are a specialized absorber that focuses squarely on attenuating low-frequencies, below 250 Hz.  View our website for more information – https://www.acousticsfirst.com/sonora-lfc.htm

As you can see from the pictures, Integrity Sound Solutions did amazing job with the installation.

What does the client think?  Per the co-owners “The sound quality is exponentially BETTER….  The stuff in the beams just disappears!”  

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