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		<pubDate>Fri, 22 May 2026 03:32:22 +0000</pubDate>
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			<title><![CDATA[dynamic of fluid flow- fluid mechanics btech notes]]></title>
			<link>https://studentsuvidha.com/forum/Thread-dynamic-of-fluid-flow-fluid-mechanics-btech-notes</link>
			<pubDate>Tue, 22 Apr 2014 22:05:49 +0000</pubDate>
			<dc:creator><![CDATA[<a href="https://studentsuvidha.com/forum/member.php?action=profile&uid=1">rusty cool</a>]]></dc:creator>
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			<description><![CDATA[this is the hand made notes of dynamic of fluid flow<br />
<br />
if you can then please post index here or please tell me if any another units comes in this<br />
<br />
<br />
thanks<br />
rusty<br /><!-- start: postbit_attachments_attachment -->
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			<content:encoded><![CDATA[this is the hand made notes of dynamic of fluid flow<br />
<br />
if you can then please post index here or please tell me if any another units comes in this<br />
<br />
<br />
thanks<br />
rusty<br /><!-- start: postbit_attachments_attachment -->
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			<title><![CDATA[dimensional analysis- fluid mechanics btech notes]]></title>
			<link>https://studentsuvidha.com/forum/Thread-dimensional-analysis-fluid-mechanics-btech-notes</link>
			<pubDate>Wed, 02 Apr 2014 19:31:19 +0000</pubDate>
			<dc:creator><![CDATA[<a href="https://studentsuvidha.com/forum/member.php?action=profile&uid=1">rusty cool</a>]]></dc:creator>
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			<description><![CDATA[<span style="font-weight: bold;" class="mycode_b">hi everyone!!</span><br />
<br />
this is hand made notes of dimensional analysis of fluid<br />
<br />
<span style="font-weight: bold;" class="mycode_b">contents:--</span><br />
<ol type="1" class="mycode_list"><li>reyligh method<br />
</li>
<li>buckingham's pi theoram<br />
</li>
<li>different types of forces in fluid flow system<br />
</li>
<li>different non dimensional number<br />
</li>
<li>reynolds, euler, froude,weber and mech numbers<br />
</li>
<li>modelling and similtude (different similarities)<br />
</li>
<li>theory of distorted model<br />
</li>
</ol>
<br />
hope you like these hand made notes.<br />
<br />
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			<content:encoded><![CDATA[<span style="font-weight: bold;" class="mycode_b">hi everyone!!</span><br />
<br />
this is hand made notes of dimensional analysis of fluid<br />
<br />
<span style="font-weight: bold;" class="mycode_b">contents:--</span><br />
<ol type="1" class="mycode_list"><li>reyligh method<br />
</li>
<li>buckingham's pi theoram<br />
</li>
<li>different types of forces in fluid flow system<br />
</li>
<li>different non dimensional number<br />
</li>
<li>reynolds, euler, froude,weber and mech numbers<br />
</li>
<li>modelling and similtude (different similarities)<br />
</li>
<li>theory of distorted model<br />
</li>
</ol>
<br />
hope you like these hand made notes.<br />
<br />
if you want to thanks us then share and post some more stuff here.<br /><!-- start: postbit_attachments_attachment -->
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			<title><![CDATA[fluid statics- fluid mechanics btech notes]]></title>
			<link>https://studentsuvidha.com/forum/Thread-fluid-statics-fluid-mechanics-btech-notes</link>
			<pubDate>Fri, 21 Mar 2014 20:13:09 +0000</pubDate>
			<dc:creator><![CDATA[<a href="https://studentsuvidha.com/forum/member.php?action=profile&uid=1">rusty cool</a>]]></dc:creator>
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			<title><![CDATA[kinematic of fluid flow - fluid mechanics btech notes]]></title>
			<link>https://studentsuvidha.com/forum/Thread-kinematic-of-fluid-flow-fluid-mechanics-btech-notes</link>
			<pubDate>Fri, 21 Mar 2014 20:11:49 +0000</pubDate>
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			<title><![CDATA[introduction to fluid mechanics btech notes]]></title>
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			<pubDate>Fri, 21 Mar 2014 20:05:06 +0000</pubDate>
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			<title><![CDATA[centrigual pump : fluid mechanics]]></title>
			<link>https://studentsuvidha.com/forum/Thread-centrigual-pump-fluid-mechanics</link>
			<pubDate>Thu, 20 Jun 2013 22:38:33 +0000</pubDate>
			<dc:creator><![CDATA[<a href="https://studentsuvidha.com/forum/member.php?action=profile&uid=1">rusty cool</a>]]></dc:creator>
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			<description><![CDATA[<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">CENTRIFUGAL PUMP</span></span><br />
<br />
Centrifugal pump works on the principle of forced vortex flow which means that when a certain amount of liquid is rotating by an external torque, then the rise in pressure head of rotating liquid takes place, and rise in pressure head at any point of rotating liqued is proportional to the square of tengential velocity of liquid at any point. and <span style="font-weight: bold;" class="mycode_b">{rise of pressure head = VxV/2g}</span>.<br />
at the outlet of impeller if radius is more then the rise of pressure head will be more. Due to this pressure head more liquid will discharge with more velocity/pressure. And due to high pressure head liquid can be lift up to high leve.</span><br />
<br />
<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">PARTS OF CENTRIFUGAL PUMP</span></span></span><ul class="mycode_list"><li><span style="color: #000000;" class="mycode_color">Impeller</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Casing</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Suction pipe</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Delivery pipe</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Foot valve</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Sump</span><br />
</li>
</ul>
<br />
<br />
<span style="color: #000000;" class="mycode_color"><img src="http://static5.theconstructor.org/wp-content/uploads/2010/09/clip_image0017.jpg" loading="lazy"  alt="[Image: clip_image0017.jpg]" class="mycode_img" /></span><br />
<br />
<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">IMPELLER</span>:--</span><br />
The rotating part of centrifugal pump is called impeller. and it contains series of backward curved wanes. The impeller is mounted on shaft and shaft is connected with electric motor.<br />
<br />
<span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">CASING:--</span></span><br />
The casing of centrifugal pump is an airtight passage surrounding impeller and is designed in such a way that kinetic energy of water discharged at the outlet of impeller is converted into pressure energy before the water leaves the casing and enters the delivery pipe. It is designed in such a way that kinetic energy of liquid discharged at the outlet is converted in pressure energy before water leaves the pump.<br />
<br />
there are three types of casing, and these are:--</span><ul class="mycode_list"><li><span style="color: #000000;" class="mycode_color">VOLUTE CASING </span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">VORTEX CASING </span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">CASING WITH GUIDE BLADES</span><br />
</li>
</ul>
<br />
<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u">VORTEX CASING</span><br />
If circular chamber is introduced between the casing and the impeller then the casing is known as vortex casing. By introducing the circular chamber efficiency of pump is increased.</span>]]></description>
			<content:encoded><![CDATA[<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">CENTRIFUGAL PUMP</span></span><br />
<br />
Centrifugal pump works on the principle of forced vortex flow which means that when a certain amount of liquid is rotating by an external torque, then the rise in pressure head of rotating liquid takes place, and rise in pressure head at any point of rotating liqued is proportional to the square of tengential velocity of liquid at any point. and <span style="font-weight: bold;" class="mycode_b">{rise of pressure head = VxV/2g}</span>.<br />
at the outlet of impeller if radius is more then the rise of pressure head will be more. Due to this pressure head more liquid will discharge with more velocity/pressure. And due to high pressure head liquid can be lift up to high leve.</span><br />
<br />
<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">PARTS OF CENTRIFUGAL PUMP</span></span></span><ul class="mycode_list"><li><span style="color: #000000;" class="mycode_color">Impeller</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Casing</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Suction pipe</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Delivery pipe</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Foot valve</span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">Sump</span><br />
</li>
</ul>
<br />
<br />
<span style="color: #000000;" class="mycode_color"><img src="http://static5.theconstructor.org/wp-content/uploads/2010/09/clip_image0017.jpg" loading="lazy"  alt="[Image: clip_image0017.jpg]" class="mycode_img" /></span><br />
<br />
<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">IMPELLER</span>:--</span><br />
The rotating part of centrifugal pump is called impeller. and it contains series of backward curved wanes. The impeller is mounted on shaft and shaft is connected with electric motor.<br />
<br />
<span style="text-decoration: underline;" class="mycode_u"><span style="font-weight: bold;" class="mycode_b">CASING:--</span></span><br />
The casing of centrifugal pump is an airtight passage surrounding impeller and is designed in such a way that kinetic energy of water discharged at the outlet of impeller is converted into pressure energy before the water leaves the casing and enters the delivery pipe. It is designed in such a way that kinetic energy of liquid discharged at the outlet is converted in pressure energy before water leaves the pump.<br />
<br />
there are three types of casing, and these are:--</span><ul class="mycode_list"><li><span style="color: #000000;" class="mycode_color">VOLUTE CASING </span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">VORTEX CASING </span><br />
</li>
<li><span style="color: #000000;" class="mycode_color">CASING WITH GUIDE BLADES</span><br />
</li>
</ul>
<br />
<span style="color: #000000;" class="mycode_color"><span style="text-decoration: underline;" class="mycode_u">VORTEX CASING</span><br />
If circular chamber is introduced between the casing and the impeller then the casing is known as vortex casing. By introducing the circular chamber efficiency of pump is increased.</span>]]></content:encoded>
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