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	<title>Hydronic Systems | tekWorx</title>
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	<description>Chiller Plant Optimization</description>
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	<title>Hydronic Systems | tekWorx</title>
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		<title>IPS® Retrofits and Chilled Water System Efficiency</title>
		<link>https://stage.tekworx.us/blog/primary-secondary-chilled-water-efficiency/</link>
		
		<dc:creator><![CDATA[Anne Duncan]]></dc:creator>
		<pubDate>Mon, 06 Apr 2020 19:58:16 +0000</pubDate>
				<category><![CDATA[Hydronic Systems]]></category>
		<category><![CDATA[bypass valve]]></category>
		<category><![CDATA[chilled water plant optimization]]></category>
		<category><![CDATA[low delta t]]></category>
		<category><![CDATA[primary secondary]]></category>
		<guid isPermaLink="false">https://www.tekworx.us/?p=704</guid>

					<description><![CDATA[Your primary/secondary system is probably not operating at optimal efficiency, but the IPS® retrofit from tekWorx can be the solution to maximize efficiency while minimizing disruption.]]></description>
										<content:encoded><![CDATA[
<h1 class="wp-block-heading">IPS® Retrofit: Discover the Simple, Effective Solution for Chiller Plant Energy Efficiency</h1>



<h3 class="wp-block-heading">Did you know that if your chiller plant features a primary/secondary (P/S) design, you are likely not operating at maximum efficiency?</h3>



<p class="wp-block-paragraph"><span class="s1">With the introduction of variable speed drives in the 1970s, the P/S design was created to take advantage of the newfound ability to modulate flow with load and the added flexibility for chiller staging. At the same time, the system met the requirement for constant evaporator flow.</span></p>



<p class="wp-block-paragraph"><span class="s1">Quickly becoming the standard, the primary/secondary design continued to be used in new plant construction, even after microprocessor chiller controls unlocked previously unreachable efficiency gains in the 1990s. The main shortcoming of the P/S layout is that its cooling strategy is solely focused on the hottest day of year, creating inadequate energy efficiency for the remaining 364.</span></p>



<p class="wp-block-paragraph"><span class="s1">P/S bypass blending represents one of the biggest energy efficiency drawbacks of the P/S system because:</span></p>



<ol class="wp-block-list">
<li><span class="s1">Chilled water not used by the load flows through the bypass and blends with warm return water</span></li>



<li><span class="s1">Blending decreases the temperature of the return water into the chiller, thereby lowering ΔT</span></li>



<li><span class="s1">Chillers must work much harder than necessary to maintain the designated temperature setpoint</span></li>
</ol>



<h2 class="wp-block-heading">Find the simple, effective solution</h2>



<p class="wp-block-paragraph"><span class="s1">Fortunately, these existing systems do not need to remain inefficient thanks to the tekWorx Integrated Primary/Secondary (IPS</span><span class="s2"><sup>®</sup></span><span class="s1">) retrofit design. The IPS</span><span class="s2"><sup>®</sup></span><span class="s1">&nbsp;retrofit requires only minor mechanical and control system modifications, a short installation time and minimal system disruption. The result? Major energy savings and utility rebates.</span></p>



<p class="wp-block-paragraph"><span class="s1">Key aspects of the IPS</span><span class="s3"><sup>®</sup></span><span class="s1">&nbsp;retrofit include:</span></p>



<ul class="wp-block-list">
<li><span class="s1">Minimizing bypass flow and associated return water blending that degrades system ΔT either by insertion of bypass valve or by controlling loop flow</span></li>



<li><span class="s1">Adding variable speed controls for pumps, fans and chillers, as needed</span></li>



<li><span class="s1">Adding new instruments to measure process variables affecting operation and efficiency (usually flow and kW) as needed</span></li>



<li><span class="s1">Using adaptive control algorithms for continuous online equipment adjustment</span></li>
</ul>



<h2 class="wp-block-heading">How the IPS<span class="s2"><sup style="font-size: 15px;">®</sup></span><span class="s1">&nbsp;retrofit design provides maximum energy savings</span></h2>



<p class="wp-block-paragraph"><span class="s1">tekWorx offers a unique blend of Approachable Expertise,</span><span class="s3"><sup>®</sup></span><span class="s1">&nbsp;increasing operational efficiency and reducing energy costs while designing pragmatic solutions to meet unique client needs. As a result, the IPS</span><span class="s3"><sup>®</sup></span><span class="s1">&nbsp;can be implemented in one of two ways:</span></p>



<p class="wp-block-paragraph">1. The most common application of the IPS<span class="s3"><sup style="font-size: 10px;">®</sup> is via the addition of a valve that eliminates bypass flow and improves system control.</span></p>


<div class="wp-block-image">
<figure class="aligncenter size-full is-resized"><img fetchpriority="high" decoding="async" width="768" height="564" src="https://stage.tekworx.us/wp-content/uploads/2020/04/tekWorx_IPS-Valve-Addition-System-Control-768x564-1-1.png" alt="" class="wp-image-3072" style="width:500px" srcset="https://stage.tekworx.us/wp-content/uploads/2020/04/tekWorx_IPS-Valve-Addition-System-Control-768x564-1-1.png 768w, https://stage.tekworx.us/wp-content/uploads/2020/04/tekWorx_IPS-Valve-Addition-System-Control-768x564-1-1-480x353.png 480w" sizes="(min-width: 0px) and (max-width: 480px) 480px, (min-width: 481px) 768px, 100vw" /></figure>
</div>


<p class="wp-block-paragraph">2. In instances where inserting a bypass valve is not an option – because it requires plant shutdown or other circumstances make this modification impractical – there is an alternative. Instead, tekWorx matches the primary and secondary loop flow to minimize bypass flow.</p>


<div class="wp-block-image">
<figure class="aligncenter size-full is-resized"><img decoding="async" width="768" height="604" src="https://stage.tekworx.us/wp-content/uploads/2020/04/tekWorx_IPS-Retrofit-Loop-Flow-768x604-1-1.png" alt="" class="wp-image-3073" style="width:500px" srcset="https://stage.tekworx.us/wp-content/uploads/2020/04/tekWorx_IPS-Retrofit-Loop-Flow-768x604-1-1.png 768w, https://stage.tekworx.us/wp-content/uploads/2020/04/tekWorx_IPS-Retrofit-Loop-Flow-768x604-1-1-480x378.png 480w" sizes="(min-width: 0px) and (max-width: 480px) 480px, (min-width: 481px) 768px, 100vw" /></figure>
</div>

<div class="gb-container gb-container-705b9a32 blog-highlighted-blue">

<h3 class="wp-block-heading">For more information</h3>



<p class="wp-block-paragraph"><span class="s1">To see how tekWorx utilized an IPS</span><span class="s2"><sup>®</sup></span><span class="s1">&nbsp;retrofit to reduce cooling costs by 28% at Chrysler’s North American headquarters, read our&nbsp;<a href="/blog/case_study/chrysler-cuts-cooling-costs-28-earns-200000-utility-rebate/"><span class="s3">case study</span></a>. Then&nbsp;<a href="/contact-us/"><span class="s3">contact us</span></a>&nbsp;to discuss how our IPS</span><span class="s2"><sup>®</sup></span><span class="s1">&nbsp;retrofit design can save money and earn utility rebates for your company.</span></p>



<p class="wp-block-paragraph"><span class="s1">Follow us on&nbsp;<a href="https://www.linkedin.com/company-beta/2220002/" target="_blank;" rel="noopener noreferrer"><span class="s3">LinkedIn</span></a>&nbsp;for the most up-to-date news and events.</span></p>

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